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1.


    Linton, Paul.
    The Perception and Cognition of Visual Space [[electronic resource] /] : монография / Paul. Linton ; . - 1st ed. 2017. - [S. l. : s. n.]. - XV, 162 p. 33 illus. - Б. ц.
    Зміст:
Chapter 1. Two Conceptions of Stereopsis --
Chapter 2. Stereopsis in the Presence of Binocular Disparity --
Chapter 3. Stereopsis in the Absence of Binocular Disparity --
Chapter 4. The Physiology and Optics of Monocular Stereopsis.
Рубрики: Cognitive psychology.
   Neuropsychology.

   Optics.

   Electrodynamics.

   Optical data processing.

   Philosophy of mind.

   Cognitive Psychology.

   Neuropsychology.

   Classical Electrodynamics.

   Image Processing and Computer Vision.

   Philosophy of Mind.

Анотація: This book explores a central question in the study of depth perception - 'does the visual system rely upon objective knowledge and subjective meaning to specify visual depth?' Linton advances an alternative interpretation to the generally accepted affirmative answer, according to which many of the apparent contributions of knowledge and meaning to depth perception are better understood as contributions to our post-perceptual cognition of depth. In order to defend this position a new account of visual cognition is required, as well as a better understanding of the optical and physiological cues to depth. This book will appeal to students and researchers in psychology, vision science, and philosophy, as well as technologists and content creators working in virtual and augmented reality. Paul Linton has taught philosophy at Oxford University and University College London, and is currently engaged in research on the optical, physiological, and cognitive cues to depth perception at the Centre for Applied Vision Research, City, University of London.

Перейти: https://doi.org/10.1007/978-3-319-66293-0

Дод.точки доступу:
Linton, Paul. \.\; SpringerLink (Online service)
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2.


    Cui, Zheng.
    Nanofabrication [[electronic resource] :] : principles, Capabilities and Limits / / Zheng. Cui ; . - 2nd ed. 2017. - [S. l. : s. n.]. - XVII, 432 p. 316 illus., 50 illus. in color. - Б. ц.
    Зміст:
1. Introduction --
2. Nanofabrication by Photons --
3. Nanofabrication by Electron Beam --
4. Nanofabrication by Ion Beam --
5. Nanofabrication by Scanning Probes --
6. Nanofabrication by Replication --
7. Nanoscale Pattern Transfer by Etching --
8. Nanoscale Pattern Transfer by Deposition --
9. Indirect Nanofabrication --
10. Nanofabrication by Self-Assembly --
11. Applications of Nanofabrication Technologies.
Рубрики: Nanotechnology.
   Mechanics.

   Mechanics, Applied.

   Electronic circuits.

   Optics.

   Electrodynamics.

   Nanotechnology and Microengineering.

   Solid Mechanics.

   Circuits and Systems.

   Classical Electrodynamics.

Анотація: This second edition of Nanofabrication is one of the most comprehensive introductions on nanofabrication technologies and processes. A practical guide and reference, this book introduces readers to all of the developed technologies that are capable of making structures below 100nm. The principle of each technology is introduced and illustrated with minimum mathematics involved. Also analyzed are the capabilities of each technology in making sub-100nm structures, and the limits of preventing a technology from going further down the dimensional scale. This book provides readers with a toolkit that will help with any of their nanofabrication challenges.

Перейти: https://doi.org/10.1007/978-3-319-39361-2

Дод.точки доступу:
Cui, Zheng. \.\; SpringerLink (Online service)
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3.


    Singh, Hema.
    Probe Suppression in Conformal Phased Array [[electronic resource] /] : монография / Hema. Singh, Dutta, Mausumi., Neethu, P. S. ; . - 1st ed. 2017. - [S. l. : s. n.]. - XXV, 43 p. 36 illus., 35 illus. in color. - Б. ц.
    Зміст:
Introduction --
Steering Vector of Conformal Phased Array --
Optimal Antenna Excitations and Adapted Pattern --
Probe Suppression in Spatially Arranged Phased Array --
Probe Suppression in Dipole Phased Array Mounted on a Right Circular Cylinder --
Conclusion --
References --
Subject Index.
Рубрики: Microwaves.
   Optical engineering.

   Optics.

   Electrodynamics.

   Electronics.

   Microelectronics.

   Microwaves, RF and Optical Engineering.

   Classical Electrodynamics.

   Electronics and Microelectronics, Instrumentation.

Анотація: This book considers a cylindrical phased array with microstrip patch antenna elements and half-wavelength dipole antenna elements. The effect of platform and mutual coupling effect is included in the analysis. The non-planar geometry is tackled by using Euler's transformation towards the calculation of array manifold. Results are presented for both conducting and dielectric cylinder. The optimal weights obtained are used to generate adapted pattern according to a given signal scenario. It is shown that array along with adaptive algorithm is able to cater to an arbitrary signal environment even when the platform effect and mutual coupling is taken into account. This book provides a step-by-step approach for analyzing the probe suppression in non-planar geometry. Its detailed illustrations and analysis will be a useful text for graduate and research students, scientists and engineers working in the area of phased arrays, low-observables and stealth technology.

Перейти: https://doi.org/10.1007/978-981-10-2272-2

Дод.точки доступу:
Dutta, Mausumi.; Neethu, P. S.; Singh, Hema. \.\; SpringerLink (Online service)
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4.


    Gouesbet, Gerard.
    Generalized Lorenz-Mie Theories [[electronic resource] /] : монография / Gerard. Gouesbet, Grehan, Gerard. ; . - 2nd ed. 2017. - [S. l. : s. n.]. - XXXVII, 331 p. 25 illus., 16 illus. in color. - Б. ц.
    Зміст:
Background in Maxwell’s Electromagnetism and Maxwell’s Equations --
Resolution of Special Maxwell‘s Equations --
Generalized Lorenz-Mie Theories in the Strict Sense, and other GLMTs --
Gaussian Beams, and Other Beams --
Finite Series --
Special Cases of Axisymmetric and Gaussian Beams --
The Localized Approximation and Localized Beam Models --
Applications, and Miscellaneous Issues --
Conclusion.
Рубрики: Fluid mechanics.
   Optics.

   Electrodynamics.

   Topological groups.

   Lie groups.

   Microwaves.

   Optical engineering.

   Engineering Fluid Dynamics.

   Classical Electrodynamics.

   Topological Groups, Lie Groups.

   Microwaves, RF and Optical Engineering.

Анотація: This book explores generalized Lorenz–Mie theories when the illuminating beam is an electromagnetic arbitrary shaped beam relying on the method of separation of variables. The new edition includes an additional chapter covering the latest advances in both research and applications, which are highly relevant for readers. Although it particularly focuses on the homogeneous sphere, the book also considers other regular particles. It discusses in detail the methods available for evaluating beam shape coefficients describing the illuminating beam. In addition it features applications used in many fields such as optical particle sizing and, more generally, optical particle characterization, morphology-dependent resonances and the mechanical effects of light for optical trapping, optical tweezers and optical stretchers. Furthermore, it provides various computer programs relevant to the content.

Перейти: https://doi.org/10.1007/978-3-319-46873-0

Дод.точки доступу:
Grehan, Gerard.; Gouesbet, Gerard. \.\; SpringerLink (Online service)
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5.


    Singh, Hema.
    EM Wave Propagation Analysis in Plasma Covered Radar Absorbing Material [[electronic resource] /] : монография / Hema. Singh, Antony, Simy., Rawat, Harish Singh. ; . - 1st ed. 2017. - [S. l. : s. n.]. - XXI, 43 p. 36 illus., 27 illus. in color. - Б. ц.
    Зміст:
Introduction --
Role of Plasma Parameters --
Formulation for EM Propagation in Plasma covered RAM --
Results and Discussion --
Conclusion --
References --
Subject Index.
Рубрики: Microwaves.
   Optical engineering.

   Optics.

   Electrodynamics.

   Electronics.

   Microelectronics.

   Microwaves, RF and Optical Engineering.

   Classical Electrodynamics.

   Electronics and Microelectronics, Instrumentation.

Анотація: This book focuses on EM propagation characteristics within multilayered plasma-dielectric-metallic media. The method used for analysis is impedance transformation method. Plasma covered radar absorbing material is approximated as a multi-layered dielectric medium. The plasma is considered to be bounded homogeneous/inhomogeneous medium. The reflection coefficient and hence return loss is analytically derived. The role of plasma parameters, such as electron density, collision frequency, plasma thickness, and plasma density profile in the absorption behavior of multi-layered plasma-RAM structure is described. This book provides a clearer picture of EM propagation within plasma. The reader will get an insight of plasma parameters that play significant role in deciding the absorption characteristics of plasma covered surfaces.

Перейти: https://doi.org/10.1007/978-981-10-2269-2

Дод.точки доступу:
Antony, Simy.; Rawat, Harish Singh.; Singh, Hema. \.\; SpringerLink (Online service)
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6.


    Wang, Zinan.
    Dual-Polarization Two-Port Fiber-Optic Gyroscope [[electronic resource] /] : монография / Zinan. Wang ; . - 1st ed. 2017. - [S. l. : s. n.]. - XVI, 93 p. 60 illus., 54 illus. in color. - Б. ц.
    Зміст:
Introduction --
Polarization Error Compensation in Dual-Polarization IFOGs --
Theory Study of Optically Compensated Dual-Polarization IFOGs --
Output Properties of Dual-Polarization IFOGs --
Multi-Channel Signal Processing Methods for IFOGs --
Preliminary Test on an Engineering Prototype of Dual-Polarization IFOG --
Conclusions and Outlook.
Рубрики: Microwaves.
   Optical engineering.

   Optics.

   Electrodynamics.

   Lasers.

   Photonics.

   Physical measurements.

   Measurement   .

   Microwaves, RF and Optical Engineering.

   Classical Electrodynamics.

   Optics, Lasers, Photonics, Optical Devices.

   Measurement Science and Instrumentation.

Анотація: This thesis demonstrates and investigates novel dual-polarization interferometric fiber-optic gyroscope (IFOG) configurations, which utilize optical compensation between two orthogonal polarizations to suppress errors caused by polarization nonreciprocity. Further, it provides a scheme for dual-polarization two-port IFOGs and details their unique benefits. Dual-polarization IFOGs break through the restriction of the "minimal scheme," which conventional IFOGs are based on. These innovative new IFOGs have unique properties: They require no polarizer and have two ports available for signal detection. As such, they open new avenues for IFOGs to achieve lower costs and higher sensitivity.

Перейти: https://doi.org/10.1007/978-981-10-2836-6

Дод.точки доступу:
Wang, Zinan. \.\; SpringerLink (Online service)
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7.


    Lin, Psang Dain.
    Advanced Geometrical Optics [[electronic resource] /] : монография / Psang Dain. Lin ; . - 1st ed. 2017. - [S. l. : s. n.]. - XXIV, 460 p. 222 illus., 193 illus. in color. - Б. ц.
    Зміст:
Mathematical Background --
Skew-Ray Tracing of Geometrical Optics --
Geometrical Optical Model --
Ray tracing Equations for Paraxial Optics --
Cardinal Points and Image Equations --
Ray Aberrations --
Jacobian Matrix of Ray Ri with Respect to Incoming ray Ri-1 and Boundary Variable Vector Xi --
Jacobian Matrix of Boundary Variable Vector Xi¬ with Respect to System Variable Vector Xsys --
Prism Analysis --
Prism Design Based on Image Orientation --
Determination of Prism Reflectors to produce required image orientation --
Optically Stable Systems --
Point Spread Function, Caustic Surfaces and Modulation Transfer Function --
Optical Path Length and Its Jacobian Matrix --
Wavefront Aberration and Wavefront Shape --
Hessian Matrix of Ray Ri with Respect to Incoming ray Ri-1 and Boundary Variable Vector Xi --
Hessian Matrix of Boundary Variable Vector Xi with Respect to System Variable Vector Xsys --
Hessian Matrix of Optical Path Length.
Рубрики: Optics.
   Electrodynamics.

   Physics.

   Quantum optics.

   Lasers.

   Photonics.

   Classical Electrodynamics.

   Numerical and Computational Physics, Simulation.

   Quantum Optics.

   Optics, Lasers, Photonics, Optical Devices.

   Mathematical Methods in Physics.

Анотація: This book computes the first- and second-order derivative matrices of skew ray and optical path length, while also providing an important mathematical tool for automatic optical design. This book consists of three parts. Part One reviews the basic theories of skew-ray tracing, paraxial optics and primary aberrations – essential reading that lays the foundation for the modeling work presented in the rest of this book. Part Two derives the Jacobian matrices of a ray and its optical path length. Although this issue is also addressed in other publications, they generally fail to consider all of the variables of a non-axially symmetrical system. The modeling work thus provides a more robust framework for the analysis and design of non-axially symmetrical systems such as prisms and head-up displays. Lastly, Part Three proposes a computational scheme for deriving the Hessian matrices of a ray and its optical path length, offering an effective means of determining an appropriate search direction when tuning the system variables in the system design process.

Перейти: https://doi.org/10.1007/978-981-10-2299-9

Дод.точки доступу:
Lin, Psang Dain. \.\; SpringerLink (Online service)
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8.


   
    The Optics of Giambattista Della Porta (ca. 1535–1615): A Reassessment [[electronic resource] /] : монография / ed.: Borrelli, Arianna., Hon, Giora., Zik, Yaakov. - 1st ed. 2017. - [S. l. : s. n.]. - V, 205 p. 69 illus. - Б. ц.
    Зміст:
1. Introduction --
2. A theater of experiments: Giambattista Della Porta and the scientific culture of Renaissance Naples --
3. Giambattista Della Porta: A magician or an optician? --
4. Optical diagrams as “paper tools”: Della Porta’s analysis of biconvex lenses from De refractione to De telescopio --
5. Giambattista Della Porta’s theory of vision in De refractione of 1593: Sources, problems, implications --
6. Magi from the north: Instruments of fire and light in the early seventeenth century --
7. Using invariances in geometrical diagrams: Della Porta, Kepler and Descartes on refraction --
8. Francesco Maurolico, Giambattista Della Porta and their theories on refraction.-9. Conclusion: A reassessment.
Рубрики: History.
   Optics.

   Electrodynamics.

   History of Science.

   Classical Electrodynamics.

Анотація: This volume contains essays that examine the optical works of Giambattista Della Porta, an Italian natural philosopher during the Scientific Revolution. Coverage also explores the science and technology of early modern optics. Della Porta's groundbreaking book, Magia Naturalis (Natural Magic), includes a prototype of the camera. Yet, because of his obsession with magic, Della Porta's scientific achievements are often forgotten. As the contributors argue, his work inspired such great minds as Johanes Kepler and Francis Bacon. After reading this book, researchers, historians, and students will have a better appreciation of this influential scientist. They will also gain a greater understanding of an important period in the history of optics. Readers will learn about Della Porta's experimental method, a process governed by the protocols, aims, and theoretical assumptions of natural magic. Coverage also discusses the material properties and limitations of optical technology in the early 17th century, based on a recently discovered Dutch spyglass. It also demonstrates how diagrams were instrumental in the discovery of the sine law of refraction. In addition, the book includes an in-depth analysis of previously untranslated Latin sources. This makes the material useful to historians of optics unfamiliar with the language. More than 70 illustrations complement the text.

Перейти: https://doi.org/10.1007/978-3-319-50215-1

Дод.точки доступу:
Borrelli, Arianna. \ed.\; Hon, Giora. \ed.\; Zik, Yaakov. \ed.\; SpringerLink (Online service)
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9.


    Gilman, Mikhail.
    Transionospheric Synthetic Aperture Imaging [[electronic resource] /] : монография / Mikhail. Gilman, Smith, Erick., Tsynkov, Semyon. ; . - 1st ed. 2017. - [S. l. : s. n.]. - XXIII, 458 p. 25 illus., 16 illus. in color. - Б. ц.
    Зміст:
Preface --
Introduction --
Conventional SAR imaging --
SAR imaging through the Earth's ionosphere --
The effect of ionospheric turbulence --
The effect of ionosopheric anisotropy --
The start-stop approximation --
Modeling radar targets beyond the first Born approximation --
Inverse scattering off anisotropic targets --
Discussion and outstanding questions --
List of Figures --
List of Tables --
Bibliography --
Index.
Рубрики: Mathematical physics.
   Signal processing.

   Image processing.

   Speech processing systems.

   Microwaves.

   Optical engineering.

   Fourier analysis.

   Optics.

   Electrodynamics.

   Geophysics.

   Mathematical Applications in the Physical Sciences.

   Signal, Image and Speech Processing.

   Microwaves, RF and Optical Engineering.

   Fourier Analysis.

   Classical Electrodynamics.

   Geophysics/Geodesy.

Анотація: This landmark monograph presents the most recent mathematical developments in the analysis of ionospheric distortions of SAR images and offers innovative new strategies for their mitigation. As a prerequisite to addressing these topics, the book also discusses the radar ambiguity theory as it applies to synthetic aperture imaging and the propagation of radio waves through the ionospheric plasma, including the anisotropic and turbulent cases. In addition, it covers a host of related subjects, such as the mathematical modeling of extended radar targets (as opposed to point-wise targets) and the scattering of radio waves off those targets, as well as the theoretical analysis of the start-stop approximation, which is used routinely in SAR signal processing but often without proper justification. The mathematics in this volume is clean and rigorous – no assumptions are hidden or ambiguously stated. The resulting work is truly interdisciplinary, providing both a comprehensive and thorough exposition of the field, as well as an accurate account of a range of relevant physical processes and phenomena. The book is intended for applied mathematicians interested in the area of radar imaging or, more generally, remote sensing, as well as physicists and electrical/electronic engineers who develop/operate spaceborne SAR sensors and perform the data processing. The methods in the book are also useful for researchers and practitioners working on other types of imaging. Moreover, the book is accessible to graduate students in applied mathematics, physics, engineering, and related disciplines. Praise for Transionospheric Synthetic Aperture Imaging: “I perceive that this text will mark a turning point in the field of synthetic aperture radar research and practice. I believe this text will instigate a new era of more rigorous image formation relieving the research, development and practitioner communities of inconsistent physical assumptions and numerical approaches.” – Richard Albanese, Senior Scientist, Albanese Defense and Energy Development LLC.

Перейти: https://doi.org/10.1007/978-3-319-52127-5

Дод.точки доступу:
Smith, Erick.; Tsynkov, Semyon.; Gilman, Mikhail. \.\; SpringerLink (Online service)
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10.


    Renk, Karl F.
    Basics of Laser Physics [[electronic resource] :] : for Students of Science and Engineering / / Karl F. Renk ; . - 2nd ed. 2017. - [S. l. : s. n.]. - XIX, 676 p. 344 illus., 7 illus. in color. - Б. ц.
    Зміст:
Part I - General Description of a Laser and an Example --
Part II - Theoretical Basis of the Laser --
Part III - Operation of a Laser --
Part IV - Types of Lasers (Except Semiconductor Lasers) --
Part V - Semiconductor Lasers --
Part VI - Laser Related Topics.
Рубрики: Lasers.
   Photonics.

   Microwaves.

   Optical engineering.

   Optics.

   Electrodynamics.

   Manufactures.

   Optics, Lasers, Photonics, Optical Devices.

   Microwaves, RF and Optical Engineering.

   Classical Electrodynamics.

   Manufacturing, Machines, Tools, Processes.

Анотація: This textbook provides an introductory presentation of all types of lasers. It contains a general description of the laser, a theoretical treatment and a characterization of its operation as it deals with gas, solid state, free-electron and semiconductor lasers. This expanded and updated second edition of the book presents a description of the dynamics of free-electron laser oscillation using a model introduced in the first edition that allows a reader to understand basic properties of a free-electron laser and makes the difference to “conventional” lasers. The discussions and the treatment of equations are presented in a way that a reader can immediately follow. The book addresses graduate and undergraduate students in science and engineering, featuring problems with solutions and over 400 illustrations.

Перейти: https://doi.org/10.1007/978-3-319-50651-7

Дод.точки доступу:
Renk, Karl F. \.\; SpringerLink (Online service)
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11.


   
    Recent Trends in Computational Photonics [[electronic resource] /] : монография / ed. Agrawal, Arti. [et al.]. - 1st ed. 2017. - [S. l. : s. n.]. - XIX, 395 p. 170 illus., 134 illus. in color. - Б. ц.
    Зміст:
Introduction to Mid Infrared Fibre Lasers --
Laser Rate and Propagation Equations --
Obtaining Spectroscopic Parameters as Inputs to the Numerical Model --
Models for Fibre Lasers --
Hydrodynamic Model for Nonlinear Plasmonics --
Discussion and Conclusions.
Рубрики: Lasers.
   Photonics.

   Optical materials.

   Electronic materials.

   Optics.

   Electrodynamics.

   Physics.

   Nanotechnology.

   Optics, Lasers, Photonics, Optical Devices.

   Optical and Electronic Materials.

   Classical Electrodynamics.

   Numerical and Computational Physics, Simulation.

   Nanotechnology.

Анотація: This book brings together the recent cutting-edge work on computational methods in photonics and their applications. The latest advances in techniques such as the Discontinuous Galerkin Time Domain method, Finite Element Time Domain method, Finite Difference Time Domain method as well as their applications are presented. Key aspects such as modelling of non-linear effects (Second Harmonic Generation, lasing in fibers, including gain nonlinearity in metamaterials), the acousto-optic effect, and the hydrodynamic model to explain electron response in nanoplasmonic structures are included. The application areas covered include plasmonics, metamaterials, photonic crystals, dielectric waveguides, fiber lasers. The chapters give a representative survey of the corresponding area. .

Перейти: https://doi.org/10.1007/978-3-319-55438-9

Дод.точки доступу:
Agrawal, Arti. \ed.\; Benson, Trevor. \ed.\; De La Rue, Richard M. \ed.\; Wurtz, Gregory A. \ed.\; SpringerLink (Online service)
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12.


    Vecchiato, Alberto.
    Variational Approach to Gravity Field Theories [[electronic resource] :] : from Newton to Einstein and Beyond / / Alberto. Vecchiato ; . - 1st ed. 2017. - [S. l. : s. n.]. - XII, 361 p. 7 illus., 4 illus. in color. - Б. ц.
    Зміст:
Part I Introduction --
The character of a scientific theory --
Field Theories and Variational approach --
Fundamental Principles and Field Theories --
Exercises --
Part II Special Relativity --
Motivations --
Mathematical model --
Electromagnetism in SR --
Exercises --
Part III General Relativity --
Motivations.-  Lagrangian formulation of GR --
Applications --
Exercises --
Part IV Beyond Relativity --
Motivations --
Theory and Experiments --
Exercises.
Рубрики: Gravitation.
   Mechanics.

   Cosmology.

   Optics.

   Electrodynamics.

   Classical and Quantum Gravitation, Relativity Theory.

   Classical Mechanics.

   Cosmology.

   Classical Electrodynamics.

Анотація: This book offers a detailed and stimulating account of the Lagrangian, or variational, approach to general relativity and beyond. The approach more usually adopted when describing general relativity is to introduce the required concepts of differential geometry and derive the field and geodesic equations from purely geometrical properties. Demonstration of the physical meaning then requires the weak field approximation of these equations to recover their Newtonian counterparts. The potential downside of this approach is that it tends to suit the mathematical mind and requires the physicist to study and work in a completely unfamiliar environment. In contrast, the approach to general relativity described in this book will be especially suited to physics students. After an introduction to field theories and the variational approach, individual sections focus on the variational approach in relation to special relativity, general relativity, and alternative theories of gravity. Throughout the text, solved exercises and examples are presented. The book will meet the needs of both students specializing in theoretical physics and those seeking a better understanding of particular aspects of the subject.

Перейти: https://doi.org/10.1007/978-3-319-51211-2

Дод.точки доступу:
Vecchiato, Alberto. \.\; SpringerLink (Online service)
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13.


   
    Fibre Optic Communication [[electronic resource] :] : key Devices / / ed.: Venghaus, Herbert., Grote, Norbert. - 2nd ed. 2017. - [S. l. : s. n.]. - XXXV, 847 p. 552 illus., 330 illus. in color. - Б. ц.
    Зміст:
Optical Networks --
Optical Fibre Lasers --
Ultrafast Lasers --
Widely Tunable Lasers --
Photodetectors --
High-Order Modulation Formats --
Modulators --
Wavelength Filters --
Optical Switches --
Passives Connectors, Optical Circulators, Optical Isolators --
Fibre Amplifiers --
SOAs --
Hybrid Integration (Silica, Triplex, Silicon, Polymer --
Monolithic Integration on InP Basis --
Silicon Photonics, Sources --
Silicon Photonics, Monolithic Integration.
Рубрики: Optics.
   Electrodynamics.

   Microwaves.

   Optical engineering.

   Electronic circuits.

   Classical Electrodynamics.

   Microwaves, RF and Optical Engineering.

   Electronic Circuits and Devices.

Анотація: The book gives an in-depth description of key devices of current and next generation fibre optic communication networks. Devices treated include semiconductor lasers, optical amplifiers, modulators, wavelength filters and other passives, detectors, all-optical switches, but relevant properties of optical fibres and network aspects are included as well. The presentations include the physical principles underlying the various devices, technologies used for their realization, typical performance characteristics and limitations, but development trends towards more advanced components are also illustrated. This new edition of a successful book was expanded and updated extensively. The new edition covers among others lasers for optical communication, optical switches, hybrid integration, monolithic integration and silicon photonics. The main focus is on Indium phosphide-based structures but silicon photonics is included as well. The book covers relevant principles, state-of-the-art implementations, status of current research as well as expected future components.

Перейти: https://doi.org/10.1007/978-3-319-42367-8

Дод.точки доступу:
Venghaus, Herbert. \ed.\; Grote, Norbert. \ed.\; SpringerLink (Online service)
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14.


    Schaferling, Martin.
    Chiral Nanophotonics [[electronic resource] :] : chiral Optical Properties of Plasmonic Systems / / Martin. Schaferling ; . - 1st ed. 2017. - [S. l. : s. n.]. - XV, 159 p. 79 illus., 75 illus. in color. - Б. ц.
    Зміст:
Introduction --
Chirality in Nature and Science --
Chiroptical Spectroscopy- Chiral Properties of Light --
Enhancement of Chiral Fields by Geometrically Chiral Structures --
Chiral Fields of Macroscopically Achiral Arrangements --
Formation of Chiral Fields Near Symmetric Structures --
Chiral Eigenmodes of Geometrically Chiral Structures --
Conclusions and Outlook.
Рубрики: Lasers.
   Photonics.

   Nanoscale science.

   Nanoscience.

   Nanostructures.

   Optics.

   Electrodynamics.

   Nanotechnology.

   Optics, Lasers, Photonics, Optical Devices.

   Nanoscale Science and Technology.

   Classical Electrodynamics.

   Nanotechnology and Microengineering.

Анотація: This book describes the physics behind the optical properties of plasmonic nanostructures focusing on chiral aspects. It explains in detail how the geometry determines chiral near-fields and how to tailor their shape and strength. Electromagnetic fields with strong optical chirality interact strongly with chiral molecules and, therefore, can be used for enhancing the sensitivity of chiroptical spectroscopy techniques. Besides a short review of the latest results in the field of plasmonically enhanced enantiomer discrimination, this book introduces the concept of chiral plasmonic near-field sources for enhanced chiroptical spectroscopy. The discussion of the fundamental properties of these light sources provides the theoretical basis for further optimizations and is of interest for researchers at the intersection of nano-optics, plasmonics and stereochemistry. .

Перейти: https://doi.org/10.1007/978-3-319-42264-0

Дод.точки доступу:
Schaferling, Martin. \.\; SpringerLink (Online service)
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15.


    Macchi, Andrea.
    Problems in Classical Electromagnetism [[electronic resource] :] : 157 Exercises with Solutions / / Andrea. Macchi, Moruzzi, Giovanni., Pegoraro, Francesco. ; . - 1st ed. 2017. - [S. l. : s. n.]. - XVIII, 454 p. 113 illus. - Б. ц.
    Зміст:
1 Basics of Electrostatics --
2 Electrostatics of Conductors --
3 Electrostatics of Dielectric Media --
4 Electric Currents --
5 Magnetostatics --
6 Magnetic Induction --
7 Electromagnetic Oscillators and Wave Propagation --
8 Maxwell Equations and Conservation Laws --
9 Relativistic Transformations of the Fields --
10 Radiation Emission and Scattering --
11 Electromagnetic Waves in Matter --
12 Transmission Lines, Waveguides --
Resonant Cavities --
13 Additional Problems.
Рубрики: Optics.
   Electrodynamics.

   Atoms.

   Physics.

   Microwaves.

   Optical engineering.

   Mathematical physics.

   Classical Electrodynamics.

   Atomic, Molecular, Optical and Plasma Physics.

   Microwaves, RF and Optical Engineering.

   Mathematical Applications in the Physical Sciences.

Анотація: This book contains 157 problems in classical electromagnetism, most of them new and original compared to those found in other textbooks. Each problem is presented with a title in order to highlight its inspiration in different areas of physics or technology, so that the book is also a survey of historical discoveries and applications of classical electromagnetism. The solutions are complete and include detailed discussions, which take into account typical questions and mistakes by the students. Without unnecessary mathematical complexity, the problems and related discussions introduce the student to advanced concepts such as unipolar and homopolar motors, magnetic monopoles, radiation pressure, angular momentum of light, bulk and surface plasmons, radiation friction, as well as to tricky concepts and ostensible ambiguities or paradoxes related to the classical theory of the electromagnetic field. With this approach the book is both a teaching tool for undergraduates in physics, mathematics and electric engineering, and a reference for students wishing to work in optics, material science, electronics, plasma physics.

Перейти: https://doi.org/10.1007/978-3-319-63133-2

Дод.точки доступу:
Moruzzi, Giovanni.; Pegoraro, Francesco.; Macchi, Andrea. \.\; SpringerLink (Online service)
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16.


   
    Advances in Optical Science and Engineering [[electronic resource] :] : proceedings of the Third International Conference, OPTRONIX 2016 / / ed. Bhattacharya, Indrani. [et al.]. - 1st ed. 2017. - [S. l. : s. n.]. - XLIII, 689 p. 429 illus. - Б. ц.
    Зміст:
Preface --
Dedication --
About the editors --
Conference Organizing Committee --
Table of Contents --
Part I Keynote Address --
Part II Plenary Address --
Part III Green Photonics --
Part IV Fibre and Integrated Optics --
Part V Lasers, Interferometry, Imaging, Devices --
Part VI Optical Communication and Networks --
Part VII Optical and Digital Data and Image Processing --
Part VIII Opto-Electronic Devices, Terahertz Technology --
Part IX Nano-Photonics, Bio-Photonics, Bio-medical Optics --
Part X Lasers, Quantum Optics and Information Technology --
Part XI E.M.Radiation Theory and Antenna --
Part XII Cryptography, Micro-Electronics & VLSI --
Part XIII Nonlinear Optics, Opto-Electronic Devices --
Part XIV Non-Linear Waveguides, Optical Fiber Devices, Photonic Crystal --
Part XV Optical and Digital Image Processing Devices --
Part XVI Micro-Electronics and VLSI --
Part XVII Interdisciplinary, Lasers, Interferometry and Devices --
Author Index.
Рубрики: Lasers.
   Photonics.

   Quantum optics.

   Optics.

   Electrodynamics.

   Energy systems.

   Optics, Lasers, Photonics, Optical Devices.

   Quantum Optics.

   Classical Electrodynamics.

   Energy Systems.

Анотація: The Proceedings of 3rd International Conference on Opto-Electronics and Applied Optics, OPTRONIX 2016 is an effort to promote and present the research works by scientists and researchers including students in India and abroad in the area of Green Photonics and other related areas as well as to raise awareness about the recent trends of research and development in the area of the related fields. The book has been organized in such a way that it will be easier for the readers to go through and find out the topic of their interests. The first part includes the Keynote addresses by Rajesh Gupta, Department of Energy Science and Engineering, Indian Institute of Technology, Bombay; P.T. Ajith Kumar, President and Leading Scientist Light Logics Holography and Optics, Crescent Hill, Trivandrum, Kerala; and K.K. Ghosh, Institute of Engineering & Management, Kolkata, India.  The second part focuses on the Plenary and Invited Talks given by eminent scientists namely, Vasudevan Lakshminarayanan, University of Waterloo, Canada; Motoharu Fujigaki, University of Fukuii, Japan; Takeo Sasaki, Tokyo University of Science, Japan; Kehar Singh, Former Professor, Indian Institute of Technology, Delhi, India; Rajpal S. Sirohi, Tezpur University, India; Ajoy  Kumar Chakraborty, Institute of Engineering & Management, India; Lakshminarayan Hazra, Emeritus Professor, Calcutta University, India; S.K. Bhadra, Emeritus Scientist, Indian Institute of Chemical Biology, India; Partha Roy Chaudhuri, Department of Physics, Indian Institute of Technology, Kharagpur, India; Navin Nishchal, Indian Institute of Technology, Patna, India; Tarun Kumar Gangopadhyay, CSIR-Central Glass and Ceramic Research Institute, India; Samudra Roy, Department of Physics, Indian Institute of Technology, Kharagpur, India; Kamakhya Ghatak, University of Engineering & Management, India. The subsequent parts focus on contributory papers in : Green Photonics; Fibre and Integrated Optics; Lasers, Interferometry; Optical Communication and Networks; Optical and Digital Data and Image Processing; Opto-Electronic Devices, Terahertz Technology; Nano-Photonics, Bio-Photonics, Bio-Medical Optics; Lasers, Quantum Optics and Information Technology; E. M. Radiation Theory and Antenna; Cryptography; Quantum and Non-Linear Optics, Opto-Electronic Devices; Non-Linear Waveguides; Micro-Electronics and VLSI; Interdisciplinary.

Перейти: https://doi.org/10.1007/978-981-10-3908-9

Дод.точки доступу:
Bhattacharya, Indrani. \ed.\; Chakrabarti, Satyajit. \ed.\; Reehal, Haricharan Singh. \ed.\; Lakshminarayanan, Vasudevan. \ed.\; SpringerLink (Online service)
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17.


    Espinoza, Fernando.
    Wave Motion as Inquiry [[electronic resource] :] : the Physics and Applications of Light and Sound / / Fernando. Espinoza ; . - 1st ed. 2017. - [S. l. : s. n.]. - XIII, 232 p. 201 illus., 176 illus. in color. - Б. ц.
    Зміст:
Introduction to wave phenomena --
General characteristics of waves --
Reflection. p- Refraction --
Interference and standing waves --
Diffraction --
Polarization --
Changes in Properties of Waves. - Wave propagation and intensity variations --
Waves and sensory perception --
Forensic Applications. - Technological applications.
Рубрики: Acoustics.
   Optics.

   Electrodynamics.

   Acoustics.

   Classical Electrodynamics.

Анотація: This undergraduate textbook on the physics of wave motion in optics and acoustics avoids presenting the topic abstractly in order to emphasize real-world examples. While providing the needed scientific context, Dr. Espinoza also relies on students' own experience to guide their learning. The book's exercises and labs strongly emphasize this inquiry-based approach. A strength of inquiry-based courses is that the students maintain a higher level of engagement when they are studying a topic that they have an internal motivation to know, rather than solely following the directives of a professor. "Wave Motion" takes those threads of engagement and interest and weaves them into a coherent picture of wave phenomena. It demystifies key components of life around us--in music, in technology, and indeed in everything we perceive--even for those without a strong math background, who might otherwise have trouble approaching the subject matter.

Перейти: https://doi.org/10.1007/978-3-319-45758-1

Дод.точки доступу:
Espinoza, Fernando. \.\; SpringerLink (Online service)
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18.


    Bettini, Alessandro.
    A Course in Classical Physics 4 - Waves and Light [[electronic resource] /] : монография / Alessandro. Bettini ; . - 1st ed. 2017. - [S. l. : s. n.]. - XIX, 361 p. 189 illus., 12 illus. in color. - Б. ц.
    Зміст:
1. Oscillations of systems with one degree of freedom --
2. Oscillations of systems with several degrees of freedom --
3. Waves --
4. Dispersion --
5. Oscillations of systems with several degrees of freedom --
6. Polarisation --
7. Optical images --
8. Coherent images.
Рубрики: Optics.
   Electrodynamics.

   Acoustics.

   Lasers.

   Photonics.

   Classical Electrodynamics.

   Acoustics.

   Optics, Lasers, Photonics, Optical Devices.

Анотація: This fourth volume of a four-volume textbook covers the oscillations of systems with one or more degrees of freedom; the concept of waves, focusing on light and sound; phase and group velocities, their physical meaning, and their measurement; diffraction and interference of light; polarization phenomena; and the formation of images in the eye and in optical instruments. The textbook as a whole covers electromagnetism, mechanics, fluids and thermodynamics, and waves and light, and is designed to reflect the typical syllabus during the first two years of a calculus-based university physics program. Throughout all four volumes, particular attention is paid to in-depth clarification of conceptual aspects, and to this end the historical roots of the principal concepts are traced. Emphasis is also consistently placed on the experimental basis of the concepts, highlighting the experimental nature of physics. Whenever feasible at the elementary level, concepts relevant to more advanced courses in quantum mechanics and atomic, solid state, nuclear, and particle physics are included. The textbook offers an ideal resource for physics students, lecturers and, last but not least, all those seeking a deeper understanding of the experimental basics of physics. .

Перейти: https://doi.org/10.1007/978-3-319-48329-0

Дод.точки доступу:
Bettini, Alessandro. \.\; SpringerLink (Online service)
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19.


   
    High Performance Soft Magnetic Materials [[electronic resource] /] : монография / ed. Zhukov, Arcady. - 1st ed. 2017. - [S. l. : s. n.]. - XI, 216 p. 153 illus., 85 illus. in color. - Б. ц.
    Зміст:
1. Amorphous and nanocrystalline glass-coated wires: optimization of soft magnetic properties --
2. Tailoring of soft magnetic properties and high frequency giant magnetoimpedance in amorphous ribbons --
3. Melt-extracted microwires.-4.Giant magneto-impedance effect in amorphous ferromagnetic microwire with a weak helical anisotropy.-5.Tunable magnetic anisotropy and magnetization reversal in microwires --
6. Tunable electric polarization of magnetic microwires for sensing applications --
7.Soft Ferromagnetic Microwires with Excellent Inductive Heating Properties for Clinical Hyperthermia Applications --
8. Magnetically bistable microwires: properties and applications for magnetic field, temperature and stress sensing --
Index .
Рубрики: Magnetism.
   Magnetic materials.

   Optical materials.

   Electronic materials.

   Nanotechnology.

   Metals.

   Optics.

   Electrodynamics.

   Ceramics.

   Glass.

   Composites (Materials).

   Composite materials.

   Magnetism, Magnetic Materials.

   Optical and Electronic Materials.

   Nanotechnology and Microengineering.

   Metallic Materials.

   Classical Electrodynamics.

   Ceramics, Glass, Composites, Natural Materials.

Анотація: This book provides comprehensive coverage of the current state-of-the-art in soft magnetic materials and related applications, with particular focus on amorphous and nanocrystalline magnetic wires and ribbons and sensor applications. Expert chapters cover preparation, processing, tuning of magnetic properties, modeling, and applications. Cost-effective soft magnetic materials are required in a range of industrial sectors, such as magnetic sensors and actuators, microelectronics, cell phones, security, automobiles, medicine, health monitoring, aerospace, informatics, and electrical engineering. This book presents both fundamentals and applications to enable academic and industry researchers to pursue further developments of these key materials. This highly interdisciplinary volume represents essential reading for researchers in materials science, magnetism, electrodynamics, and modeling who are interested in working with soft magnets. Covers magnetic microwires, sensor applications, amorphous and nanocrystalline magnetic materials, and composite magnetic materials Discusses the fundamental physics and applications of the giant magnetoimpedance effect Presents tailoring of properties, characterization, and applications.

Перейти: https://doi.org/10.1007/978-3-319-49707-5

Дод.точки доступу:
Zhukov, Arcady. \ed.\; SpringerLink (Online service)
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20.


   
    Progress in Nanophotonics 4 [[electronic resource] /] : монография / ed.: Ohtsu, Motoichi., Yatsui, Takashi. - 1st ed. 2017. - [S. l. : s. n.]. - XIII, 146 p. 91 illus., 26 illus. in color. - Б. ц.
    Зміст:
Progress in dressed photon technology and the future --
Nonequilibrium statistical mechanical models for photon breeding processes assisted by dressed-photon-phonons --
Nearfield-assisted chemical reactions and its applications --
Nanophotonics-based self-optimization for macro-optical applications --
Ultraflexible organic electronics and photonics.
Рубрики: Lasers.
   Photonics.

   Quantum optics.

   Nanotechnology.

   Optics.

   Electrodynamics.

   Nanoscale science.

   Nanoscience.

   Nanostructures.

   Optics, Lasers, Photonics, Optical Devices.

   Quantum Optics.

   Nanotechnology and Microengineering.

   Nanotechnology.

   Classical Electrodynamics.

   Nanoscale Science and Technology.

Анотація: This book presents the recent progress in the field of nanophotonics. It contains review-like chapters focusing on various but mutually related topics in nanophotonics written by the world’s leading scientists. Following the elaboration of the idea of nanophotonics, much theoretical and experimental work has been carried out, and several novel photonic devices, high-resolution fabrication, highly efficient energy conversion, and novel information processing have been developed in these years. Novel theoretical models describing the nanometric light-matter interaction, nonequilibrium statistical mechanical models for photon breeding processes and near-field?assisted chemical reactions as well as light?matter interaction are also explained in this book. It describes dressed photon technology and its applications, including implementation of nanophotonic devices and systems, fabrication methods and performance characteristics of ultrathin, ultraflexible organic light?emitting diodes, organic solar cells and organic transistors. .

Перейти: https://doi.org/10.1007/978-3-319-49013-7

Дод.точки доступу:
Ohtsu, Motoichi. \ed.\; Yatsui, Takashi. \ed.\; SpringerLink (Online service)
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© Міжнародна Асоціація користувачів і розробників електронних бібліотек і нових інформаційних технологій
(Асоціація ЕБНІТ)