3 edition of Semiconductor Transport found in the catalog.
Published
September 2000
by CRC
.
Written in English
The Physical Object | |
---|---|
Format | Hardcover |
Number of Pages | 384 |
ID Numbers | |
Open Library | OL9427921M |
ISBN 10 | 0748408657 |
ISBN 10 | 9780748408658 |
TY - BOOK. T1 - Transport in semiconductor mesoscopic devices. AU - Ferry, David K. PY - /8/1. Y1 - /8/1. N2 - Modern electronics is being transformed as device size decreases to a size where the dimensions are significantly smaller than the constituent electron's mean free by: 4. 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.
This field of semiconductor "spintronics" (spin transport electron ics or spin-based electronics) places electron spin rather than charge at the very center of interest. The underlying basis for this new electronics is the intimate connection between the charge and spin degrees of freedom of the electron via the Pauli principle.3/5(2). Compound Semiconductor Device Physics (The Open Edition) Sandip Tiwari Original Publisher: ACADEMIC PRESS Originally published by Harcourt Brace Jovanovich, Publishers This open book is made available under the Creative Commons License with Attribution license terms; you are free to share and distribute with attribution.
Semiconductor Statistics presents statistics aimed at complementing existing books on the relationships between carrier densities and transport effects. The book is divided into two parts. Part I provides introductory material on the electron theory of solids, and then discusses carrier statistics for semiconductors in thermal equilibrium. This updated and enlarged new edition of Semiconductor Optics provides an introduction to and an overview of semiconductor optics from the IR through the visible to the UV, including linear and nonlinear optical properties, dynamics, magneto and electrooptics, high-excitation effects and laser processes, some applications, experimental techniques and group theory.
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Semiconductor Transport is an introductory text on electron transport in semiconductor materials and is written for advanced undergraduates and graduate students. The book provides a thorough treatment of modern approaches to the transport properties of semiconductors and their calculation.
One great book to start with is Neamen's Semiconductor Physics and Devices. It's written in an easygoing tone and very readable, and it covers everything from basic solid-state physics to transport behavior (e.g., drift-diffusion) to all kinds of.
Semiconductor Transport is an introductory text on electron transport in semiconductor materials and is written for advanced undergraduates and graduate students. The book provides a thorough treatment of modern approaches to the transport properties of semiconductors and their : Paperback.
This carrier transport mechanism is due to the thermal energy and the associated random motion of the carriers. We will refer to this transport mechanism as carrier diffusion.
The total current in a semiconductor equals the sum of the drift and the diffusion current. "Semiconductor Transport is an introductory text on electron transport in semiconductor materials and is written for advanced undergraduates and graduate students.
The book provides a treatment of modern approaches to the transport properties of semiconductors and their calculation. This textbook describes the physics of semiconductor nanostructures with emphasis on their electronic transport properties.
At its heart are five fundamental transport phenomena: quantized conductance, tunnelling transport, the Aharonov-Bohm effect, the quantum Hall Cited by: Semiconductor Transport is an introductory text on electron transport in semiconductor materials and is written for advanced undergraduates and graduate students.
The book provides a thorough treatment of modern approaches to the transport properties of semiconductors and Book Edition: 1st Edition.
Semiconductor Transport is an introductory text on electron transport in semiconductor materials and is written for advanced undergraduates and graduate students. The book provides a thorough treatment of modern approaches to the transport properties of semiconductors and.
This book, which appears in the electronic materials series, presents an over view of the theoretical background and recent developments in the theory of electrical transport in. Semiconductor Transport is an introductory text on electron transport in semiconductor materials and is written for advanced undergraduates and graduate students.
The book provides a thorough treatment of modern approaches to the transport properties of semiconductors and their : CRC Press. Book Abstract: Semiconductor devices are ubiquitous in today's world and found increasingly in cars, kitchens, and electronic door looks, attesting to their presence in our daily lives.
This comprehensive book brings you the fundamentals of semiconductor device theory from. Sham, Physics Today, July, ) "The topics covered in the book include a good number of the important theoretical foundations of semiconductor optics and transport phenomena.
If the reader is interested in the theory of optical and transport phenomena, this is an appropriate book." (Mike Gal, The Physicist, Vol. 39 (6), ). This book presents the physics of semiconductor nanostructures with emphasis on their electronic transport properties.
At its heart are five fundamental transport phenomena: quantized conductance, tunneling transport, the Aharonov–Bohm effect, the quantum Hall effect, and the Coulomb blockade effect. The book starts out with basics of solid state and semiconductor physics, such as crystal Author: Thomas Ihn.
This book introduces the physics and applications of transport in such mesoscopic and nanoscale electronic systems and devices. The behaviour of these novel devices is influenced by numerous effects not seen in bulk semiconductors, such as the Aharonov–Bohm Effect, disorder and localization, energy quantization, electron wave interference Brand: Institute of Physics Publishing.
Physics for the year has been awarded to two semiconductor physicists, Zhores I. Alferov and Herbert Kroemer (“for developing semiconductor het-erostructures used in high-speed- and opto-electronics”) and a semiconductor device engineer, Jack S.
Kilby (“for his part in the invention of the integrated circuit”). Semiconductors is a journal that сovers semiconductor theory, transport phenomena in semiconductors, optics, magnetooptics, and electrooptics of semiconductors, devices based on semiconductors and nanostructures including lasers, semiconductor surface physics, and structural defects in semiconductors.
PEER REVIEW. Semiconductors is a peer reviewed journal. This textbook describes the physics of semiconductor nanostructures with emphasis on their electronic transport properties. At its heart are five fundamental transport phenomena: quantized conductance, tunnelling transport, the Aharonov-Bohm effect, the quantum Hall.
This book introduces the physics and applications of transport in such mesoscopic and nanoscale electronic systems and devices.
The behaviour of these novel devices is influenced by numerous effects not seen in bulk semiconductors, such as the Aharonov–Bohm Effect, disorder and localization, energy quantization, electron wave interference. Semiconductor Optics and Transport Phenomena. Authors: Schäfer, Wilfried, Wegener, Martin Free Preview.
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eye 2, favorite 0 comment 0. Topic: National Semiconductor. National Semiconductor Manuals. 2, K. National Semiconductor Operational Amplifiers Data BookOCR -- texts. eye 2, favorite 0. The Third Edition of the standard textbook and reference in the field of semiconductor devices This classic book has set the standard for advanced study and reference in the semiconductor device field.
Now completely updated and reorganized to reflect the tremendous advances in device concepts and performance, this Third Edition remains the most detailed and exhaustive single source of.book treats p-n junctions, bipolar junction transistors, semiconductor lasers and photodevices, after which the subject of heterostructures and superlattices is taken up with coverage of electronic, lattice dynamical, optical, and transport properties.
The book concludes with treatments of.Introduction. Summary: As one applies an electric field to a semiconductor, the electrostatic force causes the carriers to first accelerate and then reach a constant average velocity, v, as the carriers scatter due to impurities and lattice ratio of the velocity to the applied field is called the mobility.
The velocity saturates at high electric fields reaching the.