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31 Paranthaman, M. Parans Semiconductor Materials for Solar Photovoltaic Cells I10146 2016 eBook  
32 Fattahi, Hanieh Third-Generation Femtosecond Technology I10144 2016 eBook  
33 Neskovic Nebojsa Rainbows in Channeling of Charged Particles in Crystals and Nanotubes I10095 2017 eBook  
34 Rivera, V.A.G Technological Advances in Tellurite Glasses I10092 2017 eBook  
35 Bozhevolnyi, Sergey I Quantum Plasmonics I10082 2017 eBook  
36 Shulika, Oleksiy Contemporary Optoelectronics I10037 2016 eBook  
37 B??er, Karl W Semiconductor Physics I10021 2018 eBook  
38 Dresselhaus, Mildred Solid State Properties I10012 2018 eBook  
39 Korzhik, Mikhail Engineering of Scintillation Materials and Radiation Technologies I09996 2017 eBook  
40 Lang, Peter Soft Matter at Aqueous Interfaces I09958 2016 eBook  
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31.    
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TitleSemiconductor Materials for Solar Photovoltaic Cells
Author(s)Paranthaman, M. Parans;Wong-Ng, Winnie;Bhattacharya, Raghu N
PublicationCham, Springer International Publishing, 2016.
DescriptionXIV, 279 p. 138 illus., 91 illus. in color : online resource
Abstract NoteThis book reviews the current status of semiconductor materials for conversion of sunlight to electricity, and highlights advances in both basic science and manufacturing.?? Photovoltaic (PV) solar electric technology will be a significant contributor to world energy supplies when reliable, efficient PV power products are manufactured in large volumes at low cost. ??Expert chapters cover the full range of semiconductor materials for solar-to-electricity conversion, from crystalline silicon and amorphous silicon to cadmium telluride, copper indium gallium sulfide selenides, dye sensitized solar cells, organic solar cells, and environmentally friendly copper zinc tin sulfide selenides. The latest methods for synthesis and characterization of solar cell materials are described, together with techniques for measuring solar cell efficiency. Semiconductor Materials for Solar Photovoltaic Cells presents the current state of the art as well as key details about future strategies to increase the efficiency and reduce costs, with particular focus on how to reduce the gap between laboratory scale efficiency and commercial module efficiency. This book will aid materials scientists and engineers in identifying research priorities to fulfill energy needs, and will also enable researchers to understand novel semiconductor materials that are emerging in the solar market. This integrated approach also gives science and engineering students a sense of the excitement and relevance of materials science in the development of novel semiconductor materials. ?????????????????? Provides a comprehensive introduction to solar PV cell materials ?????????????????? Reviews current and future status of solar cells with respect to cost and efficiency ?????????????????? Covers the full range of solar cell materials, from silicon and thin films to dye sensitized and organic solar cells ?????????????????? Offers an in-depth account of the semiconductor material strategies and directions for further research ?????????????????? Features detailed tables on the world leaders in efficiency demonstrations ?????????????????? Edited by scientists with experience in both research and industry ??
ISBN,Price9783319203317
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electronic materials 4. Interfaces (Physical sciences) 5. Materials???Surfaces 6. Optical and Electronic Materials 7. OPTICAL MATERIALS 8. Renewable and Green Energy 9. Renewable energy resources 10. SEMICONDUCTORS 11. Surface and Interface Science, Thin Films 12. Surfaces (Physics) 13. Surfaces and Interfaces, Thin Films 14. THIN FILMS
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32.     
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TitleThird-Generation Femtosecond Technology
Author(s)Fattahi, Hanieh
PublicationCham, Springer International Publishing, 2016.
DescriptionXVIII, 140 p. 75 illus., 25 illus. in color : online resource
Abstract NoteThis thesis offers a thorough and informative study of high-power, high-energy optical parametric chirped pulse amplifications systems, the foundation of the next generation of femtosecond laser technology. Starting from the basics of the linear processes involved and the essential design considerations, the author clearly and systematically describes the various??prerequisites of the??nonlinear optical??systems expected to drive attosecond physics in the coming decade. In this context, he??gives an overview of methods for generating the broadband and carrier-envelope-phase stable seed pulses necessary for producing controlled electric-field waveforms in the final system; provides a guide to handling the high-power, high-energy pump lasers??required to boost the pulse energy to the desired operating range; describes the design of the nonlinear optical system used to perform the amplification, including modes of operation for ultra-broadband infrared-visible pulses or narrowband (yet still ultrafast) pulses tunable over multiple octaves; and finally presents a prospective high-energy field synthesizer based upon these techniques. As such, this work is essential reading for all scientists interested in utilizing the newest generation of ultrafast systems
ISBN,Price9783319200255
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electronic materials 4. LASERS 5. Optical and Electronic Materials 6. OPTICAL MATERIALS 7. Optics, Lasers, Photonics, Optical Devices 8. PHOTONICS 9. QUANTUM OPTICS
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33.     
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TitleRainbows in Channeling of Charged Particles in Crystals and Nanotubes
Author(s)Neskovic Nebojsa;Srdjan Petrovic;Marko Cosic
PublicationCham, Springer International Publishing, 2017.
DescriptionX, 194 p. 116 illus., 53 illus. in color : online resource
Abstract NoteThis book discusses the effects, modeling, latest results, and nanotechnology applications of rainbows that appear during channeling of charged particles in crystals and nanotubes. The authors begin with a brief review of the optical and particle rainbow effects followed by a detailed description of crystal rainbows, which appear in ion channeling in crystals, and their modeling using catastrophe theory. The effects of spatial and angular focusing of channeled ions are described, with special attention given to the applications of the former effect to subatomic microscopy. The results of a thorough study of the recent high-resolution channeling experiments performed with protons of energies between 2.0 and 0.7 MeV and a 55 nm thick silicon crystal are also provided. This study opens up the potential for accurate analysis of very thin crystals. Also presented are recent results related to rainbows occurring in proton transmission through carbon nanotubes, and a detailed quantum consideration of the transmission of positrons of an energy of 1 MeV through very short carbon nanotubes. This process is determined by the rainbow effect. The initial positron beam is represented as an ensemble of non-interacting Gaussian wave packets, and the principal and supernumerary primary rainbows appearing in the spatial and angular distributions of transmitted positrons are clearly identified. They are explained by the effects of wrinkling, concentration and coordination of the wave packets
ISBN,Price9783319615240
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electronic materials 4. Nanoscale science 5. Nanoscale Science and Technology 6. NANOSCIENCE 7. Nanostructures 8. NANOTECHNOLOGY 9. Nanotechnology and Microengineering 10. Optical and Electronic Materials 11. OPTICAL MATERIALS
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34.     
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TitleTechnological Advances in Tellurite Glasses : Properties, Processing, and Applications
Author(s)Rivera, V.A.G;Manzani, Danilo
PublicationCham, Springer International Publishing, 2017.
DescriptionIX, 335 p. 169 illus., 117 illus. in color : online resource
Abstract NoteThis book is the first to provide a comprehensive introduction to the synthesis, optical properties, and photonics applications of tellurite glasses. The book begins with an overview of tellurite glasses, followed by expert chapters on synthesis, properties, and state-of-the-art applications ranging from laser glass, optical fibers, and optical communications through color tuning, plasmonics, supercontinuum generation, and other photonic devices. The book provides in-depth information on the the structural, linear, and non-linear optical properties of tellurite glasses and their implications for device development. Real-world examples give the reader valuable insight into the applications of tellurite glass. A detailed discussion of glass production methods, including raw materials and melting and refining oxide- and fluoro-tellurite glasses, is also included. The book features an extensive reference list for further reading. This highly readable and didactic text draws on chemical composition, glass science, quantum mechanics, and electrodynamics. It is suitable for both advanced undergraduate and graduate students as well as practicing researchers. Serves as a key reference on the development of a new generation of photonics devices based on tellurite glasses Addresses the knowledge gap in tellurite glasses among physicists, chemists, and materials scientists Contributes to current research into the optical properties of oxide/fluoro-tellurite glasses Offers perspectives on likely future trends and challenges for tellurite glasses in the field of photonics and nanophotonics
ISBN,Price9783319530383
Keyword(s)1. Ceramics 2. Ceramics, Glass, Composites, Natural Materials 3. Composite materials 4. Composites (Materials) 5. EBOOK 6. EBOOK - SPRINGER 7. Electronic materials 8. ELECTRONICS 9. Electronics and Microelectronics, Instrumentation 10. GLASS 11. LASERS 12. MICROELECTRONICS 13. Optical and Electronic Materials 14. OPTICAL MATERIALS 15. Optics, Lasers, Photonics, Optical Devices 16. PHOTONICS 17. QUANTUM OPTICS
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I10092     On Shelf    

35.     
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TitleQuantum Plasmonics
Author(s)Bozhevolnyi, Sergey I;Martin-Moreno, Luis;Garcia-Vidal, Francisco
PublicationCham, Springer International Publishing, 2017.
DescriptionXVII, 327 p. 139 illus., 74 illus. in color : online resource
Abstract NoteThis book presents the latest results of quantum properties of light in the nanostructured environment supporting surface plasmons, including waveguide quantum electrodynamics, quantum emitters, strong-coupling phenomena and lasing in plasmonic structures. Different approaches are described for controlling the emission and propagation of light with extreme light confinement and field enhancement provided by surface plasmons. Recent progress is reviewed in both experimental and theoretical investigations within quantum plasmonics, elucidating the fundamental physical phenomena involved and discussing the realization of quantum-controlled devices, including single-photon sources, transistors and ultra-compact circuitry at the nanoscale.
ISBN,Price9783319458205
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electronic materials 4. LASERS 5. MICROWAVES 6. Microwaves, RF and Optical Engineering 7. NANOTECHNOLOGY 8. Nanotechnology and Microengineering 9. Optical and Electronic Materials 10. OPTICAL ENGINEERING 11. OPTICAL MATERIALS 12. Optics, Lasers, Photonics, Optical Devices 13. PHOTONICS 14. QUANTUM OPTICS 15. SEMICONDUCTORS
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36.     
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TitleContemporary Optoelectronics : Materials, Metamaterials and Device Applications
Author(s)Shulika, Oleksiy;Sukhoivanov, Igor
PublicationDordrecht, Springer Netherlands, 2016.
DescriptionX, 234 p. 121 illus., 66 illus. in color : online resource
Abstract NoteThis book presents a collection of extended contributions on the physics and application of optoelectronic materials and metamaterials. ????The book is divided into three parts, respectively covering materials, metamaterials and optoelectronic devices.?? Individual chapters cover topics including phonon-polariton interaction, semiconductor and nonlinear organic materials, metallic, dielectric and gyrotropic metamaterials, singular optics, parity-time symmetry, nonlinear plasmonics, microstructured optical fibers, passive nonlinear shaping of ultrashort pulses, and pulse-preserving supercontinuum generation. The book contains both experimental and theoretical studies, and each contribution is a self-contained exposition of a particular topic, featuring an extensive reference list. ??The book will be a useful resource for graduate and postgraduate students, researchers and engineers involved in optoelectronics/photonics, quantum electronics, optics, and adjacent areas of science and technology
ISBN,Price9789401773157
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electronic materials 4. LASERS 5. MICROWAVES 6. Microwaves, RF and Optical Engineering 7. Optical and Electronic Materials 8. OPTICAL ENGINEERING 9. OPTICAL MATERIALS 10. Optics, Lasers, Photonics, Optical Devices 11. PHOTONICS
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37.     
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TitleSemiconductor Physics
Author(s)B??er, Karl W;Pohl, Udo W
PublicationCham, Springer International Publishing, 2018.
DescriptioneReference : online resource
Abstract NoteThis handbook gives a complete survey of the important topics and results in semiconductor physics. It addresses every fundamental principle and most research topics and areas of application in the field of semiconductor physics. Comprehensive information is provided on crystalline bulk and low-dimensional as well as amporphous semiconductors, including optical, transport, and dynamic properties
ISBN,Price9783319691503
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. ELECTRICAL ENGINEERING 4. Electronic materials 5. LASERS 6. Optical and Electronic Materials 7. OPTICAL MATERIALS 8. Optics, Lasers, Photonics, Optical Devices 9. PHOTONICS 10. SEMICONDUCTORS 11. SOLID STATE PHYSICS
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I10021     On Shelf    

38.     
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TitleSolid State Properties : From Bulk to Nano
Author(s)Dresselhaus, Mildred;Dresselhaus, Gene;Cronin, Stephen B;Gomes Souza Filho, Antonio
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2018.
DescriptionXVIII, 517 p. 247 illus., 46 illus. in color : online resource
Abstract NoteThis book fills a gap between many of the basic solid state physics and materials science books that are currently available. It is written for a mixed audience of electrical engineering and applied physics students who have some knowledge of elementary undergraduate quantum mechanics and statistical mechanics. This book, based on a successful course taught at MIT, is divided pedagogically into three parts: (I) Electronic Structure, (II) Transport Properties, and (III) Optical Properties. Each topic is explained in the context of bulk materials and then extended to low-dimensional materials where applicable. Problem sets review the content of each chapter to help students to understand the material described in each of the chapters more deeply and to prepare them to master the next chapters
ISBN,Price9783662559222
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electronic materials 4. LASERS 5. LOW TEMPERATURE PHYSICS 6. LOW TEMPERATURES 7. Nanoscale science 8. Nanoscale Science and Technology 9. NANOSCIENCE 10. Nanostructures 11. NANOTECHNOLOGY 12. Nanotechnology and Microengineering 13. Optical and Electronic Materials 14. OPTICAL MATERIALS 15. Optics, Lasers, Photonics, Optical Devices 16. PHOTONICS 17. SOLID STATE PHYSICS
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39.     
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TitleEngineering of Scintillation Materials and Radiation Technologies : Proceedings of ISMART 2016
Author(s)Korzhik, Mikhail;Gektin, Alexander
PublicationCham, Springer International Publishing, 2017.
DescriptionXII, 339 p. 233 illus., 93 illus. in color : online resource
Abstract NoteThis volume provides a broad overview of the latest achievements in scintillator development, from theory to applications, and aiming for a deeper understanding of fundamental processes, as well as the discovery and availability of components for the production of new generations of scintillation materials. It includes papers on the microtheory of scintillation and the initial phase of luminescence development, applications of the various materials, and development and characterization of ionizing radiation detection equipment. The book also touches upon the increased demand for cryogenic scintillators, the renaissance of?? garnet materials for scintillator applications, nano-structuring in scintillator development, development and applications for security, and exploration of hydrocarbons and ecological monitoring
ISBN,Price9783319684659
Keyword(s)1. Characterization and Evaluation of Materials 2. EBOOK 3. EBOOK - SPRINGER 4. Electronic materials 5. MATERIALS SCIENCE 6. Measurement Science and Instrumentation 7. Measurement?????? 8. MICROSCOPY 9. Optical and Electronic Materials 10. OPTICAL MATERIALS 11. Particle acceleration 12. Particle Acceleration and Detection, Beam Physics 13. PHYSICAL MEASUREMENTS 14. SOLID STATE PHYSICS 15. SPECTROSCOPY 16. Spectroscopy and Microscopy
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40.    
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TitleSoft Matter at Aqueous Interfaces
Author(s)Lang, Peter;Liu, Yi
PublicationCham, Springer International Publishing, 2016.
DescriptionVIII, 555 p. 230 illus., 116 illus. in color : online resource
Abstract NoteThis book covers the science of interfaces between an aqueous phase and a solid, another liquid or a gaseous phase, starting from the basic physical chemistry all the way to state-of-the-art research developments. Both experimental and theoretical methods are treated thanks to the contributions of a distinguished list of authors who are all active researchers in their respective fields. The properties of these interfaces are crucial for a wide variety of processes, products and biological systems and functions, such as the formulation of personal care and food products, paints and coatings, microfluidic and lab-on-a-chip applications, cell membranes, and lung surfactants. Accordingly, research and expertise on the subject are spread over a broad range of academic disciplines and industrial laboratories. This book brings together knowledge from these different places with the aim of fostering education, collaborations and research progress
ISBN,Price9783319245027
Keyword(s)1. Amorphous substances 2. Complex fluids 3. EBOOK 4. EBOOK - SPRINGER 5. Electronic materials 6. Optical and Electronic Materials 7. OPTICAL MATERIALS 8. PHYSICAL CHEMISTRY 9. Polymer Sciences 10. Polymers???? 11. Soft and Granular Matter, Complex Fluids and Microfluidics
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