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1 Kunihiro, Teiji Geometrical Formulation of Renormalization-Group Method as an Asymptotic Analysis I12527 2022 Book  
2 Kengne, Emmanuel Nonlinear Waves I12473 2022 Book  
3 Ganeev, Rashid A High-Order Harmonics Generation in Plasmas I12442 2022 Book  
4 Hofer, Christina Detection Efficiency and Bandwidth Optimized Electro-Optic Sampling of Mid-Infrared Waves I12291 2022 Book  
5 Zadok, Avi Forward Brillouin Scattering in Standard Optical Fibers I12278 2022 Book  
6 Wimberger, Sandro Nonlinear Dynamics and Quantum Chaos I12262 2022 Book  
7 Alfano, Robert R The Supercontinuum Laser Source I12253 2022 Book  
8 Blaschke, David Optics and Its Applications I12236 2022 Book  
9 Torres-Torres, Carlos Optical Nonlinearities in Nanostructured Systems I12188 2022 Book  
10 Murashita, Y??to Fluctuation Theorems under Divergent Entropy Production and their Applications for Fundamental Problems in Statistical Physics I11960 2021 eBook  
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TitleGeometrical Formulation of Renormalization-Group Method as an Asymptotic Analysis : With Applications to Derivation of Causal Fluid Dynamics
Author(s)Kunihiro, Teiji;Kikuchi, Yuta;Tsumura, Kyosuke
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXVII, 486 p. 21 illus., 9 illus. in color : online resource
Abstract NoteThis book presents a comprehensive account of the renormalization-group (RG) method and its extension, the doublet scheme, in a geometrical point of view. It extract long timescale macroscopic/mesoscopic dynamics from microscopic equations in an intuitively understandable way rather than in a mathematically rigorous manner and introduces readers to a mathematically elementary, but useful and widely applicable technique for analyzing asymptotic solutions in mathematical models of nature. The book begins with the basic notion of the RG theory, including its connection with the separation of scales. Then it formulates the RG method as a construction method of envelopes of the naive perturbative solutions containing secular terms, and then demonstrates the formulation in various types of evolution equations. Lastly, it describes successful physical examples, such as stochastic and transport phenomena including second-order relativistic as well as nonrelativistic fluid dynamics with causality and transport phenomena in cold atoms, with extensive numerical expositions of transport coefficients and relaxation times. Requiring only an undergraduate-level understanding of physics and mathematics, the book clearly describes the notions and mathematical techniques with a wealth of examples. It is a unique and can be enlightening resource for readers who feel mystified by renormalization theory in quantum field theory
ISBN,Price9789811681899
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Mathematical Methods in Physics 4. MATHEMATICAL PHYSICS 5. NONLINEAR OPTICS 6. Theoretical, Mathematical and Computational Physics
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TitleNonlinear Waves : From Dissipative Solitons to Magnetic Solitons
Author(s)Kengne, Emmanuel;Liu, WuMing
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXXIV, 513 p. 230 illus., 169 illus. in color : online resource
Abstract NoteThis book highlights the methods to engineer dissipative and magnetic nonlinear waves propagating in nonlinear systems. In the first part of the book, the authors present methodologically mathematical models of nonlinear waves propagating in one- and two-dimensional nonlinear transmission networks without/with dissipative elements. Based on these models, the authors investigate the generation and the transmission of nonlinear modulated waves, in general, and solitary waves, in particular, in networks under consideration. In the second part of the book, the authors develop basic theoretical results for the dynamics matter-wave and magnetic-wave solitons of nonlinear systems and of Bose???Einstein condensates trapped in external potentials, combined with the time-modulated nonlinearity. The models treated here are based on one-, two-, and three-component non-autonomous Gross???Pitaevskii equations. Based on the Heisenberg model of spin???spin interactions, the authors also investigate the dynamics of magnetization in ferromagnet with or without spin-transfer torque. This research book is suitable for physicists, mathematicians, engineers, and graduate students in physics, mathematics, and network and information engineering
ISBN,Price9789811967443
Keyword(s)1. CONDENSED MATTER 2. CONDENSED MATTER PHYSICS 3. EBOOK 4. EBOOK - SPRINGER 5. Mathematical Methods in Physics 6. MATHEMATICAL PHYSICS 7. NONLINEAR OPTICS
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TitleHigh-Order Harmonics Generation in Plasmas : Resonance Processes, Quasi-Phase-Matching, and Nanostructures
Author(s)Ganeev, Rashid A
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXXXVII, 271 p. 136 illus., 130 illus. in color : online resource
Abstract NoteThis book comprises a detailed consideration of novel approaches developed in the field of frequency conversion of laser sources in laser-induced plasmas during the last few years. The aim of the book is to support researchers and other readers in their development in the area of high-order nonlinear spectroscopy. Particularly, the advanced studies of nanoparticles and quantum dots for the formation of new sources of radiation in different short-wavelength spectral ranges show the ways to further implement the specific features of small-sized species in a relatively new field of study???laser ablation induced high-order harmonics generation spectroscopy. Researchers involved in the development of new methods of frequency conversion will benefit from finding the most recent advances in this field. Undergraduate students will discover interesting information about recent findings in plasma harmonic research. Additionally, the usefulness of the book will be demonstrated by the potential applications of the new knowledge developed during recent years for ultrafast pulse generation using the proposed schemes of plasma-light interaction. Thus, the audience may also include those researchers involved in state-of-the-art developments in attophysics. Additionally, any professionals interested in the application of the advanced techniques for material science will also benefit from updating their knowledge of new methods of material studies using high-order nonlinear spectroscopy
ISBN,Price9783031090400
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Harmonics (Electric waves) 4. Harmonics and X-Ray generation 5. NONLINEAR OPTICS 6. OPTICS 7. Optics and Photonics 8. X-rays
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TitleDetection Efficiency and Bandwidth Optimized Electro-Optic Sampling of Mid-Infrared Waves
Author(s)Hofer, Christina
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXV, 121 p. 66 illus., 62 illus. in color : online resource
Abstract NoteThis thesis investigates the detection efficiency of field-resolved measurements of ultrashort mid-infrared waves via electro-optic sampling for the first time. Employing high-power gate pulses and phase-matched upconversion in thick nonlinear crystals, unprecedented efficiencies are achieved for octave-spanning fields in this wavelength range. In combination with state-of-the art, high-power, ultrashort mid-infrared sources, this allows to demonstrate a new regime of linear detection dynamic range for field strengths from mV/cm to MV/cm-levels. These results crucially contribute to the development of field-resolved spectrometers for early disease detection, as fundamental vibrational modes of (bio-)molecules lie in the investigated spectral range. The results are discussed and compared with previous sensitivity records for electric-field measurements and reference is made to related implementations of the described characterization technique. Including a detailed theoretical description and simulation results, the work elucidates crucial scaling laws, characteristics and limitations. The thesis will thus serve as an educational introduction to the topic of field-resolved measurements using electro-optic sampling, giving detailed instructions on simulations and experimental implementations. At the same time, it showcases the state-of-the-art in terms of detection sensitivity for characterizing mid-infrared waves
ISBN,Price9783031153280
Keyword(s)1. Chemical detectors 2. EBOOK 3. EBOOK - SPRINGER 4. LASER 5. LASERS 6. NONLINEAR OPTICS 7. OPTICAL SPECTROSCOPY 8. PHOTONIC CRYSTALS 9. SENSORS
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5.     
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TitleForward Brillouin Scattering in Standard Optical Fibers : Single-Mode, Polarization-Maintaining, and Multi-Core
Author(s)Zadok, Avi;Diamandi, Hilel Hagai;London, Yosef;Bashan, Gil
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXII, 207 p. 78 illus., 76 illus. in color : online resource
Abstract NoteThis book, the first dedicated to the topic, provides a comprehensive treatment of forward stimulated Brillouin scattering (SBS) in standard optical fibers. SBS interactions between guided light and sound waves have drawn much attention for over fifty years, and optical fibers provide an excellent playground for the study of Brillouin scattering as they support guided modes of both wave types and provide long interaction lengths. This book is dedicated to forward SBS processes that are driven by co-propagating optical fields. The physics of forward SBS is explained in detail, starting from the fundamentals of interactions between guided optical and acoustic waves, with emphasis given to the acoustic modes that are stimulated in the processes. The realization of forward SBS in standard single-mode, polarization-maintaining and multi-core fibers is then discussed in depth. Innovative potential applications in sensors, monitoring of coating layers, lasers, and radio-frequency oscillators are presented. This book introduces the subject to graduate students in optics and applied physics, and it will be of interest to scientists working in fiber-optics, nonlinear optics and opto-mechanics
ISBN,Price9783031135996
Keyword(s)1. ACOUSTICS 2. DETECTORS 3. EBOOK 4. EBOOK - SPRINGER 5. FIBER OPTICS 6. FIBRE OPTICS 7. MATERIALS 8. Microwaves, RF Engineering and Optical Communications 9. NONLINEAR OPTICS 10. Sensors and biosensors 11. TELECOMMUNICATION
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6.     
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TitleNonlinear Dynamics and Quantum Chaos : An Introduction
Author(s)Wimberger, Sandro
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXVI, 259 p. 119 illus., 58 illus. in color : online resource
Abstract NoteThis book presents a clear and concise introduction to the field of nonlinear dynamics and chaos, suitable for graduate students in mathematics, physics, chemistry, engineering, and in natural sciences in general. This second edition includes additional material and in particular a new chapter on dissipative nonlinear systems. The book provides a thorough and modern introduction to the concepts of dynamical systems' theory combining in a comprehensive way classical and quantum mechanical description. It is based on lectures on classical and quantum chaos held by the author at Heidelberg and Parma University. The book contains exercises and worked examples, which make it ideal for an introductory course for students as well as for researchers starting to work in the field
ISBN,Price9783031012495
Keyword(s)1. CLASSICAL MECHANICS 2. DYNAMICAL SYSTEMS 3. EBOOK 4. EBOOK - SPRINGER 5. Mathematical Methods in Physics 6. MATHEMATICAL PHYSICS 7. MECHANICS 8. NONLINEAR OPTICS
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I12262     On Shelf    

7.     
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TitleThe Supercontinuum Laser Source : The Ultimate White Light
Author(s)Alfano, Robert R
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXIX, 639 p. 122 illus., 89 illus. in color : online resource
Abstract NoteThis book, now in its fourth edition, is a well-known classic on the ultrafast nonlinear and linear processes responsible for supercontinuum generation. The book begins with chapters reviewing the experimental and theoretical understanding of the field along with key applications developed since the discovery of the supercontinuum effect. The chapters that follow cover recent research activity on supercontinuum phenomena, novel applications, and advances achieved since the publication of the previous edition. The new chapters focus on: filamentation in gases, air, and condensed media; conical emission by four-wave mixing and X-waves; electronic self-phase mechanism; higher harmonics generation; attosecond laser pulses; complex vector beam supercontinuum; higher order self-phase modulation and cross-phase modulation; nonlinear supercontinuum interference in uniaxial crystals; new nonlinear microscopes involving supercontinuum and ultrafast lasers with biomedical applications; and other current supercontinuum applications in communications. The Supercontinuum Laser Source is a definitive work by one of the discoverers of the white light effect. It is indispensable reading for any researcher or student working in the field of ultrafast laser physics. Chapter 6 is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com
ISBN,Price9783031061974
Keyword(s)1. Biology???Technique 2. Biophysical Methods 3. BIOPHYSICS 4. EBOOK 5. EBOOK - SPRINGER 6. LASER 7. LASERS 8. NONLINEAR OPTICS 9. OPTICAL ENGINEERING 10. PHOTONICS 11. Photonics and Optical Engineering 12. Ultrafast Photonics
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8.     
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TitleOptics and Its Applications : Proceedings of the 9th International Symposium OPTICS-2022
Author(s)Blaschke, David;Firsov, Dmitry;Papoyan, Aram;Sarkisyan, Hayk A
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXVIII, 213 p. 89 illus., 70 illus. in color : online resource
Abstract NoteThis book features selected articles based on contributions presented at the 9th International Symposium on Optics and Its Applications (OPTICS-2022) in Yerevan-Ashtarak, Armenia. The annual OPTICS symposium brings together renowned experts from all over the world working in the fields of atomic optics, plasmonics, optics of nanostructures, as well as the optics of condensed matter, and provides a perfect setting for their discussions of the most recent developments in this area. The 9th iteration in this series, dedicated to the 80th birthday of Academician Eduard Kazaryan, focuses on topics dealing with the spectroscopy of real and artificial atoms, linear and nonlinear optical characteristics of quantum wells, and two-dimensional materials. The book highlights recent results of few-particle optical characteristics of artificial atoms in the framework of the exactly solvable Moshinsky model, as well as an electro-optical analog of the magneto-optical Faraday effect. In addition, a detailed study of the nucleation process, its characterization, as well as electronic and optical properties of graded composition quantum dots in the Stranski???Krastanov growth mode, is presented
ISBN,Price9783031112874
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Nanophotonics 4. Nanophotonics and Plasmonics 5. NONLINEAR OPTICS 6. OPTICAL SPECTROSCOPY 7. OPTICS 8. Optics and Photonics 9. Plasmonics 10. QUANTUM OPTICS
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I12236     On Shelf    

9.     
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TitleOptical Nonlinearities in Nanostructured Systems
Author(s)Torres-Torres, Carlos;Garc??a-Beltr??n, Geselle
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXVII, 169 p. 47 illus., 46 illus. in color : online resource
Abstract NoteThis book provides readers with a detailed overview of second- and third-order nonlinearities in various nanostructures, as well as their potential applications. Interest in the field of nonlinear optics has grown exponentially in recent years and, as a result, there is increasing research on novel nonlinear phenomena and the development of nonlinear photonic devices. Thus, such a book serves as a comprehensive guide for researchers in the field and those seeking to become familiar with it. This text focuses on the nonlinear properties of nanostructured systems that arise as a result of optical wave mixing. The authors present a review of nonlinear optical processes on the nanoscale and provide theoretical descriptions for second and third-order optical nonlinearities in nanostructures such as carbon allotropes, metallic nanostructures, semiconductors, nanocrystals, and complex geometries. Here, the characterization and potential applications of these nanomaterials are also discussed. The factors that determine the nonlinear susceptibility in these systems are identified as well as the influence of physical mechanisms emerging from resonance and off-resonance excitations. In addition, the authors detail the effects driven by important phenomena such as quantum confinement, localized surface plasmon resonance, Fano resonances, bound states, and the Purcell effect on specific nanostructured systems. Readers are provided with a groundwork for future research as well as new perspectives in this growing field
ISBN,Price9783031108242
Keyword(s)1. CONDENSED MATTER 2. EBOOK 3. EBOOK - SPRINGER 4. Nanoelectromechanical systems 5. Nanophotonics 6. Nanophotonics and Plasmonics 7. Nanoscale Devices 8. NONLINEAR OPTICS 9. PHOTONIC CRYSTALS 10. Plasmonics 11. Two-dimensional Materials
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10.    
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TitleFluctuation Theorems under Divergent Entropy Production and their Applications for Fundamental Problems in Statistical Physics
Author(s)Murashita, Y??to
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXIII, 133 p. 21 illus., 17 illus. in color : online resource
Abstract NoteThis book presents the derivation of the fluctuation theorems with divergent entropy production and their application to fundamental problems in statistical physics. It explores the two basic aspects of the fluctuation theorems: i) Applicability in extreme situations with divergent entropy production, concluding that the fluctuation theorems remain valid under the notion of absolute irreversibility, and ii) utility in the investigation of classical enigmas in the framework of statistical physics, i.e., Gibbs and Loschmidt paradoxes. The book offers readers an overview of the research in fundamental statistical physics. Firstly it briefly but skillfully reviews the modern development of fluctuation theorems to found the key theme of the book. Secondly it concisely discusses historical issues of statistical physics in chronological order, along with the key literature in the field. They help readers easily follow the key developments in the fundamental research of statistical physics
ISBN,Price9789811686382
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. MATHEMATICAL PHYSICS 4. NONLINEAR OPTICS 5. Theoretical, Mathematical and Computational Physics 6. THERMODYNAMICS
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I11960     On Shelf    

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