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EBSCO_ocn890479456 |
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140912s2014 nyu o 001 0 eng d |
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|a 9781633212121
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|a 1633212122
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|a 621.381/045
|2 23
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|a UAMI
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|a Advances in optoelectronics research /
|c Marcus R. Oswald, editor.
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|a Hauppauge, N.Y. :
|b Nova Science Publishers, Inc.,
|c [2014]
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|a 1 online resource
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|a text
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|a Lasers and electro-optics research and technology
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|a Includes index.
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|a Print version record.
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|a ADVANCES IN OPTOELECTRONICS RESEARCH; Library of Congress Cataloging-in-Publication Data; Contents; Preface; Chapter 1: Hot Carrier Luminescence in Silicon Metal Oxide Semiconductor Field Effect Transistor; Abstract; 1. Introduction; 2. Analysis of the Mechanisms of the Optical Radiation; 3. The Relationship between the Electrons and the Photons in the MOSFET; 4. Monolithic OEIC for On-Chip Optical Interconnection based on Standard CMOS Technology; Conclusion; Acknowledgment; References; Chapter 2: Supramolecular Polymer Semiconductors (SPSs) toward Organic Mechatronics; Abstract.
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|a IntroductionStacked Polymer Semiconductors; Hindrance-Functionalized pi-Stacked Polymer Semiconductors; Supramolecular Resistive Switching; Supramolecular Electrophosphorescent Polymer Host Materials; Polyfluorene-Based Supramolecular Gels and Aggregate Luminescence; PPFOH-Based Supramolecular Conjugated Polymers; Supramolecular Electroluminescence; Conclusion; Outlook; Acknowledgments; References; Chapter 3: Elastico-Mechanoluminescent Materials: Preparation, Properties, Mechanism and Applications; Abstract; 1. Introduction; 2. Material Synthesis and Coating Preparation.
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|a 3. Elastico-Mechanoluminescent Properties3.1. Multi-Stress Sensitivity; 3.2. Linear Relation; 3.3. Repeatability; 3.4. Water Resistance; 4. Elastico-Mechanoluminescent Mechanism; 4.1. Piezoelectrically Induced Electroluminescence Model; 4.2. Piezoelectrically Induced Carriers De-Trapping Model; 5. Elastico-Mechanoluminescent Applications; 5.1. Stress Sensor; 5.2. Stress Distribution Detecting; 5.3. Structural Health Diagnosis; 5.4. Light Source; 5.5. Bio-Imaging; 6. Challenges and Perspectives; Acknowledgments; References.
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|a Chapter 4: Nonlinear and Fluctuation Phenomena under Conditions of Strong Selective Reflection in Inclined GeometryAbstract; 1. Introduction; 2. Experimental Technique; 3. Linear SR in Inclined Geometry; 3.1. Comparable Study of SR for Different Angles of Incidence and Polarizations; 3.2. Elementary Theoretical Model and Calculations; 3.3. Comparison with Similar Works; 4. Nonlinear SR in Inclined Geometry; 4.1. Saturation of the Strong SR; 4.2. New Nonlinear Structures in SR Spectra; 4.3. Asymmetry of Saturation of Selective TIR; 5. Quasilevels of Intensity of Selective Reflected Light.
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|a 5.1. Saturation of Intensity Quasilevels5.2. Information Signals and Noise on Quasilevels; 6. The noise of a Fabry-Perot Semiconductor Laser with External Optical Feedback; 6.1. Generation Spectrum and the Noise of a Semiconductor Laser; 6.2. Sub-Poissonian Lasing without Noise of All Subthreshold Modes; 7. Squeezing of Quantum Fluctuations for Selective Reflected Light; Conclusion; References; Biographical Sketch; Index.
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590 |
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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650 |
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|a Optoelectronics.
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650 |
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|a Optoélectronique.
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|a TECHNOLOGY & ENGINEERING
|x Mechanical.
|2 bisacsh
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|a Optoelectronics
|2 fast
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700 |
1 |
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|a Oswald, Marcus R.,
|e editor.
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776 |
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|i Print version:
|t Advances in optoelectronics research
|z 9781633212107
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|w (OCoLC)880501081
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830 |
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|a Lasers and electro-optics research and technology series.
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856 |
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