Photonics: scientific foundations, technology and applications 2 Nanophotonic structures and materials
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Hoboken, NJ
Wiley
2015
Science Wise Publ. 2015 |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | XII, 412 S. Ill., graph. Darst. |
ISBN: | 9781118225516 |
Internformat
MARC
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Datensatz im Suchindex
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adam_text | Discusses the basic physical principles underlying the science and
technology of nanophotonics, its materials and structures
This volume presents nanophotonic structures and materials.
Nanophotonics is photonic science and technology that utilizes light/
matter interactions on the nanoscale where researchers are discovering
new phenomena and developing techniques that go well beyond what is
possible with conventional photonics and electronics. The topics discussed
in this volume are: Silicon Photonics; Cavity Photonics; Metamaterials:
State of the Art and Future Directions; Nanoplasmonics; Dielectric Photonic
Crystals; Quantum Dots; Magnetic Control of Spin in Molecular Photonics;
Thin-Film Molecular Nanophotonics; Light-Harvesting Materials for Organic
Electronics; Metal Oxide Photoelectrochemistry for Hydrogen Production;
and Optical Control of Cold Atoms and Bose-Einstein Condensates.
• Comprehensive and accessible coverage of the whole of
modern photonics
• Emphasizes processes and applications that specifically exploit
photon attributes of light
• Deals with the rapidly advancing area of modern optics
• Chapters are written by top scientists in their field
Written for the graduate-level student in physical sciences; industrial and
academic researchers in photonics, graduate students in the area; college
lecturers, educators, policymakers, consultants, scientific and technical
libraries, government laboratories, NIH.
DAVID L. ANDREWS leads research on fundamental molecular
photonics and energy transport, optomechanical forces, and nonlinear
optical phenomena. He has over 300 research papers and a dozen of
books to his name—including the widely adopted textbook, Lasers in
Chemistry. The current focus of his research group is on optical vortices,
novel mechanisms for optical nanomanipulation and switching, and light
harvesting in nanostructured molecular systems. The group enjoys strong
international links, particularly with groups in Canada, Lithuania, New
Zealand, and the United States. Andrews is a Fellow of the Royal Society
of Chemistry, a Fellow of the Institute of Physics, and a Fellow of SPIE, the
international society for optics and photonics.
ISBN 978-1-118-22551-6
CONTENTS
List of Contributors
Preface
a
ix
XI
1 Silicon Photonics 1
Wim Bogaerts
1.1 Introduction, 1
1.2 Applications, 1
1.3 Optical Functions, 3
1.4 Silicon Photonics Technology, 10
1.5 Conclusion, 15
References, 15
2 Cavity Photonics 21
J. M0rk, P T. Kristensen, P. Kaery M. Heuck, K Fw, arcd TV. Gregersen
2.1 Introduction, 21
2.2 Cavity Fundamentals, 22
2.3 Cavity-Based Switches, 26
2.4 Emitters in Cavities, 32
2.5 Nanocavity Lasers and LEDs, 42
v
vi
CONTENTS
2.6 Summary, 46
Acknowledgments, 47
References, 47
3 Metamaterials: State-of-the Art and Future Directions 53
Natalia M. Litchinitser and Vladimir M. Shalaev
3.1 Introduction, 53
3.2 Negative-Index Materials, 54
3.3 Magnetic Metamaterials, 59
3.4 Graded-Index Transition Metamaterials, 62
3.5 Transformation Optics, 70
3.6 Metasurfaces, 75
References, 78
4 Quantum Nanoplasmonics 85
Mark I. Stockman
4.1 Introduction, 85
4.2 Spaser and Nanoplasmonics with Gain, 86
4.3 Adiabatic Hot-Electron Nanoscopy, 118
Acknowledgments, 125
References, 125
5 Dielectric Photonic Crystals 133
Robert H. Lipson
5.1 Introduction, 133
5.2 Fundamentals, 134
5.3 Fabrication Methods and Materials, 145
5.4 Applications, 154
5.5 Conclusions, 159
References, 159
6 Quantum Dots 169
Stanley Tsao and Manijeh Razeghi
6.1 Introduction, 169
6.2 Quantum Dots for Infrared Detection, 175
6.3 Quantum Dot Growth, 179
6.4 Device Fabrication and Measurement Procedures, 184
6.5 Gallium Arsenide—Based Quantum Dot Detectors, 186
6.6 Indium Phosphide-Based Quantum Dot Detectors, 198
6.7 Colloidal Quantum Dots, 215
6.8 Conclusion, 216
References, 217
CONTENTS
vii
7 Magnetic Control of Spin in Molecular Photonics
Eitan Ehrenfreund and Z. Valy Vardeny
1.1 Introduction, 221
7.2 A Survey of the Magneto-Electroluminescence in OLEDs, 222
7.3 Organic MEL at Small Magnetic Fields; Compass Effect, 232
7.4 Magnetic Field Effect on Excited State Spectroscopies in Organic
Semiconductor Films, 236
7.5 Basic Quantum Mechanical Models Based on Spin-Mixing
Manipulation by Magnetic Fields, 246
7.6 Summary, 254
Acknowledgments, 255
References, 255
8 Thin-Film Molecular Nanophotonics
, Tetsuzo Yoshimura
8.1 Introduction, 261
8.2 Molecular Assembling for Nanoscale Tailored Structures, 262
8.3 Molecular Layer Deposition, 264
8.4 Organic Multiple Quantum Dots (MQDs), 267
8.5 Self-Organized Lightwave Network, 283
8.6 Proposed Applications, 292
8.7 Summary, 305
References, 305
9 Light-Harvesting Materials for Organic Electronics
Damien Joly, Juan Luis Delgado, Carmen Atienza, and Nazario Martin
9.1 Introduction, 311
9.2 Photoinduced Electron Transfer (PET) in Artificial
Photosynthetic Systems, 313
9.3 Fullerenes for Organic Photovoltaics, 323
9.4 Molecular Wires, 330
9.5 Conclusions, 335
Acknowledgments, 335
References, 336
10 Recent Advances in Metal Oxide-Based Photoelectrochemical
Hydrogen Production
Bob C. Fitzmorris and Jin Z. Zhang
10.1 Introduction, 343
10.2 Materials for PEC Hydrogen Production, 346
10.3 Conclusion, 362
References, 363
221
261
311
343
viii CONTENTS
11 Optical Control of Cold Atoms and Artificial Electromagnetism
Gediminas Juzeliünas and Patrik Öhberg
11.1 Introduction, 371
11.2 Atomic Bose-Einstein Condensates, 372
11.3 Optical Forces on Atoms, 376
References, 393
Index
371
401
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spelling | Photonics scientific foundations, technology and applications 2 Nanophotonic structures and materials ed. by David L. Andrews Hoboken, NJ Wiley 2015 Science Wise Publ. 2015 XII, 412 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Andrews, David L. 1952- Sonstige (DE-588)139421904 oth (DE-604)BV042624249 2 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028056938&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028056938&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | Photonics scientific foundations, technology and applications |
title | Photonics scientific foundations, technology and applications |
title_auth | Photonics scientific foundations, technology and applications |
title_exact_search | Photonics scientific foundations, technology and applications |
title_full | Photonics scientific foundations, technology and applications 2 Nanophotonic structures and materials ed. by David L. Andrews |
title_fullStr | Photonics scientific foundations, technology and applications 2 Nanophotonic structures and materials ed. by David L. Andrews |
title_full_unstemmed | Photonics scientific foundations, technology and applications 2 Nanophotonic structures and materials ed. by David L. Andrews |
title_short | Photonics |
title_sort | photonics scientific foundations technology and applications nanophotonic structures and materials |
title_sub | scientific foundations, technology and applications |
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