Quantum mechanics for electrical engineers / by Dennis Sullivan.

By: Sullivan, Dennis Michael, 1949-Material type: TextTextPublication details: Hoboken, N.J. : Wiley, IEEE Press ; c2012Description: xvii, 429 p. : ill. ; 24 cmISBN: 9780470874097 (pbk)Subject(s): Quantum theory | Electrical engineering | ElectricityDDC classification: 530.120246213
Contents:
Introduction -- Stationary States -- Fourier Theory in Quantum Mechanics -- Matrix Algebra in Quantum Mechanics -- A Brief Introduction to Statistical Mechanics -- Bands and Subbands -- The Sch{under}rdinger Equation for Spin-1/2 Fermions -- The Green's Function Formulation -- Transmission -- Approximation Methods -- The Harmonic Oscillator -- Finding Eigenfunctions Using Time-Domain Simulation -- Appendix A: Important Constants and Units -- Appendix B: Fourier Analysis and the Fast Fourier Transform (FFT) -- Appendix C: An Introduction to the Green's Function Method -- Appendix D: Listings of the Programs Used in this Book -- Index.
Summary: The main topic of this book is quantum mechanics, as the title indicates. It specifically targets those topics within quantum mechanics that are needed to understand modern semiconductor theory. It begins with the motivation for quantum mechanics and why classical physics fails when dealing with very small particles and small dimensions. Two key features make this book different from others on quantum mechanics, even those usually intended for engineers: First, after a brief introduction, much of the development is through Fourier theory, a topic that is at the heart of most electrical engineering theory. In this manner, the explanation of the quantum mechanics is rooted in the mathematics familiar to every electrical engineer. Secondly, beginning with the first chapter, simple computer programs in MATLAB are used to illustrate the principles. The programs can easily be copied and used by the reader to do the exercises at the end of the chapters or to just become more familiar with the material. Many of the figures in this book have a title across the top. This title is the name of the MATLAB program that was used to generate that figure. These programs are available to the reader. Appendix D lists all the programs, and they are also downloadable at http://booksupport.wiley.com"--
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Holdings
Item type Current library Call number Status Date due Barcode Item holds
Books Books Namal Library
Electrical Engineering
530.12 SUL-Q 2012 9032 (Browse shelf (Opens below)) Available 0009032
Total holds: 0
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515.64 DIS-C 2012 372 Schaum's outlines control systems 519.5 MON-A 2006 892 Applied Statistics and Probability for Engineers / 529.1 RAM-R 2010 649 Rocket propulsion / 530.12 SUL-Q 2012 9032 Quantum mechanics for electrical engineers 530.141 MIL-F 1998 2954 Foundations of electromagnetic theory / 530 RAY-P 1990 882 Physics : 537 DRE-E 2008 12598 Electrical circuits : harnessing electricity /

Includes index.

Introduction --
Stationary States --
Fourier Theory in Quantum Mechanics --
Matrix Algebra in Quantum Mechanics --
A Brief Introduction to Statistical Mechanics --
Bands and Subbands --
The Sch{under}rdinger Equation for Spin-1/2 Fermions --
The Green's Function Formulation --
Transmission --
Approximation Methods --
The Harmonic Oscillator --
Finding Eigenfunctions Using Time-Domain Simulation --
Appendix A: Important Constants and Units --
Appendix B: Fourier Analysis and the Fast Fourier Transform (FFT) --
Appendix C: An Introduction to the Green's Function Method --
Appendix D: Listings of the Programs Used in this Book --
Index.

The main topic of this book is quantum mechanics, as the title indicates. It specifically targets those topics within quantum mechanics that are needed to understand modern semiconductor theory. It begins with the motivation for quantum mechanics and why classical physics fails when dealing with very small particles and small dimensions. Two key features make this book different from others on quantum mechanics, even those usually intended for engineers: First, after a brief introduction, much of the development is through Fourier theory, a topic that is at the heart of most electrical engineering theory. In this manner, the explanation of the quantum mechanics is rooted in the mathematics familiar to every electrical engineer. Secondly, beginning with the first chapter, simple computer programs in MATLAB are used to illustrate the principles. The programs can easily be copied and used by the reader to do the exercises at the end of the chapters or to just become more familiar with the material. Many of the figures in this book have a title across the top. This title is the name of the MATLAB program that was used to generate that figure. These programs are available to the reader. Appendix D lists all the programs, and they are also downloadable at http://booksupport.wiley.com"--

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