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 #  AuthorTitleAccn#YearItem Type Claims
1 Li, Sheng S Semiconductor Physical Electronics I06784 2006 eBook  
2 Li, Sheng S Intersubband Transitions in Quantum Wells: Physics and Devices I04864 1998 eBook  
3 Li, Sheng S Semiconductor Physical Electronics I01653 1993 eBook  
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1.    
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TitleSemiconductor Physical Electronics
Author(s)Li, Sheng S
PublicationNew York, NY, Springer New York, 2006.
DescriptionXIII, 697 p : online resource
Abstract NoteSemiconductor Physical Electronics, Second Edition, provides comprehensive coverage of fundamental semiconductor physics that is essential to an understanding of the physical and operational principles of a wide variety of semiconductor electronic and optoelectronic devices. This text presents a unified and balanced treatment of the physics, characterization, and applications of semiconductor materials and devices for physicists and material scientists who need further exposure to semiconductor and photonic devices, and for device engineers who need additional background on the underlying physical principles. This updated and revised second edition reflects advances in semicondutor technologies over the past decade, including many new semiconductor devices that have emerged and entered into the marketplace. It is suitable for graduate students in electrical engineering, materials science, physics, and chemical engineering, and as a general reference for processing and device engineers working in the semicondictor industry.
ISBN,Price9780387377667
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. ELECTRICAL ENGINEERING 4. Electronic materials 5. INORGANIC CHEMISTRY 6. LASERS 7. MICROSCOPY 8. Optical and Electronic Materials 9. OPTICAL MATERIALS 10. Optics, Lasers, Photonics, Optical Devices 11. PHOTONICS 12. SOLID STATE PHYSICS 13. SPECTROSCOPY 14. Spectroscopy and Microscopy
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I06784     On Shelf    

2.     
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TitleIntersubband Transitions in Quantum Wells: Physics and Devices
Author(s)Li, Sheng S;Yan-Kuin Su
PublicationNew York, NY, Springer US, 1998.
DescriptionIX, 214 p. 10 illus : online resource
Abstract NoteThe International Workshop on "Intersubband Transitions in Quantum Wells:: Physics and Applications," was held at National Cheng Kung University, in Tainan, Taiwan, December 15-18, 1997. The objective of the Workshop is to facilitate the presentation and discussion of the recent results in theoretical, experimental, and applied aspects of intersubband transitions in quantum wells and dots. The program followed the tradition initiated at the 1991 conference in Cargese-France, the 1993 conference in Whistler, B. C. Canada, and the 1995 conference in Kibbutz Ginosar, Israel. Intersubband transitions in quantum wells and quantum dots have attracted considerable attention in recent years, mainly due to the promise of various applications in the mid- and far-infrared regions (2-30 J. lm). Over 40 invited and contributed papers were presented in this four-day workshop, with topics covered most aspects of the intersubband transition phenomena including: the basic intersubband transition processes, multiquantum well infrared photodetector (QWIP) physics, large format (640x480) GaAs QWIP (with 9. 0 J. lffi cutoff) focal plane arrays (FPAs) for IR imaging camera applications, infrared modulation, intersubband emission including mid- and long- wavelength quantum cascade (QC) lasers such as short (A. "" 3. 4 J. lm) and long (A. "" 11. 5 J. lm) wavelength room temperature QC lasers, quantum fountain intersubband laser at 15. 5 J. lm wavelength in GaAs/AIGaAs quantum well, harmonic generation and nonlinear effects, ultra-fast phenomena such as terahertz (THz) intersubband emission and detection. The book divides into five Chapters
ISBN,Price9781461557593
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. ELECTRICAL ENGINEERING 4. LASERS 5. MICROSCOPY 6. Optics, Lasers, Photonics, Optical Devices 7. PHOTONICS 8. SOLID STATE PHYSICS 9. SPECTROSCOPY 10. Spectroscopy and Microscopy
Item TypeeBook
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3.    
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TitleSemiconductor Physical Electronics
Author(s)Li, Sheng S
PublicationNew York, NY, Springer US, 1993.
Description528 p : online resource
Abstract NoteThe purpose of this book is to provide the reader with a self-contained treatment of fundamen?? tal solid state and semiconductor device physics. The material presented in the text is based upon the lecture notes of a one-year graduate course sequence taught by this author for many years in the ??Department of Electrical Engineering of the University of Florida. It is intended as an introductory textbook for graduate students in electrical engineering. However, many students from other disciplines and backgrounds such as chemical engineering, materials science, and physics have also taken this course sequence, and will be interested in the material presented herein. This book may also serve as a general reference for device engineers in the semiconductor industry. The present volume covers a wide variety of topics on basic solid state physics and physical principles of various semiconductor devices. The main subjects covered include crystal structures, lattice dynamics, semiconductor statistics, energy band theory, excess carrier phenomena and recombination mechanisms, carrier transport and scattering mechanisms, optical properties, photoelectric effects, metal-semiconductor devices, the p--n junction diode, bipolar junction transistor, MOS devices, photonic devices, quantum effect devices, and high?? speed III-V semiconductor devices. The text presents a unified and balanced treatment of the physics of semiconductor materials and devices. It is intended to provide physicists and mat?? erials scientists with more device backgrounds, and device engineers with a broader knowledge of fundamental solid state physics
ISBN,Price9781461304890
Keyword(s)1. CONDENSED MATTER 2. CONDENSED MATTER PHYSICS 3. CRYSTALLOGRAPHY 4. Crystallography and Scattering Methods 5. EBOOK 6. EBOOK - SPRINGER 7. ELECTRICAL ENGINEERING 8. Electronic materials 9. MICROSCOPY 10. Optical and Electronic Materials 11. OPTICAL MATERIALS 12. SOLID STATE PHYSICS 13. SPECTROSCOPY 14. Spectroscopy and Microscopy
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