Solid State and Quantum Theory for Optoelectronics
Autor Michael A. Parkeren Limba Engleză Hardback – 16 dec 2009
In Solid State and Quantum Theory for Optoelectronics, Michael Parker provides a general conceptual framework for matter that leads to the matter-light interaction explored in the author’s Physics of Optoelectronics (CRC Press). Instead of overburdening readers with the definition–theorem– proof format often expected in mathematics texts, this book instructs readers through the development of conceptual pictures. Employing a proven pedagogic approach, as rigorous as it is intuitive, Professor Parker –
- Provides several lead-ins to the quantum theory including a brief review of Lagrange and Hamilton’s approach to classical mechanics and the fundamental quantum link with Hilbert space
- Demonstrates the Schrödinger wave equation from the Feynman path integral
- Discusses standard topics such as the quantum well, harmonic oscillator, representations, perturbation theory, and spin
- Expands discussion from the density operator and its applications to quantum computing and teleportation
- Provides the concepts for ensembles and microstates in detail with emphasis on the derivation of particle population distributions across energy levels
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Specificații
ISBN-13: 9780849337505
ISBN-10: 084933750X
Pagini: 848
Ilustrații: 425 b/w images, 9 tables and 1176
Dimensiuni: 178 x 254 x 44 mm
Greutate: 1.68 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
ISBN-10: 084933750X
Pagini: 848
Ilustrații: 425 b/w images, 9 tables and 1176
Dimensiuni: 178 x 254 x 44 mm
Greutate: 1.68 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Public țintă
ProfessionalCuprins
Introduction to the Solid State. Vectors and Hilbert Space. Operators and Hilbert Space. Fundamentals of Classical Mechanics. Quantum Mechanics. Solid-State: Structure and Phonons. Solid-State: Conduction, States and Bands. Statistical Mechanics.
Descriere
Solid State and Quantum Theory for Optoelectronics presents a logical progression of material from the mathematics of linear algebra and Hilbert space to fundamental and perturbed solutions of the Schrödinger wave equation to multi-particle systems, second quantization, and Feynman Path integrals. This book provides applications to bonding, energy band theory including tight binding and k-p theory, electrical transport and density of states, and tensor effective mass. Covering recent developments in quantum computing and teleportation, it also includes a discussion of statistical mechanics and entropy to deduce the Fermi-Dirac and Boltzman distributions.