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Heisenberg`s Uncertainty Principle and the Electron Statistics in Quantized Structures, Ghatak Kamakhya Prasad, Mitra Madhuchhanda, Biswas Arindam


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Автор: Ghatak Kamakhya Prasad, Mitra Madhuchhanda, Biswas Arindam
Название:  Heisenberg`s Uncertainty Principle and the Electron Statistics in Quantized Structures
ISBN: 9789811698439
Издательство: Springer
Классификация:




ISBN-10: 9811698430
Обложка/Формат: Hardcover
Страницы: 262
Вес: 0.54 кг.
Дата издания: 26.04.2022
Язык: English
Издание: 1st ed. 2022
Иллюстрации: 200 tables, color; 63 illustrations, color; 70 illustrations, black and white; xxvi, 234 p. 133 illus., 63 illus. in color.
Размер: 23.39 x 15.60 x 1.60 cm
Читательская аудитория: Professional & vocational
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: This book highlights the importance of Electron Statistics (ES), which occupies a singular position in the arena of solid state sciences, in heavily doped (HD) nanostructures by applying Heisenberg’s Uncertainty Principle directly without using the complicated Density-of-States function approach as given in the literature. The materials considered are HD quantum confined nonlinear optical, III-V, II-VI, IV-VI, GaP, Ge, PtSb2, stressed materials, GaSb, Te, II-V, Bi2Te3, lead germanium telluride, zinc and cadmium diphosphides, and quantum confined III-V, IV-VI, II-VI and HgTe/CdTe super-lattices with graded interfaces and effective mass super-lattices. The presence of intense light waves in optoelectronics and strong electric field in nano-devices change the band structure of materials in fundamental ways, which have also been incorporated in the study of ES in HD quantized structures of optoelectronic compounds that control the studies of the HD quantum effect devices under strong fields. The influence of magnetic quantization, magneto size quantization, quantum wells, wires and dots, crossed electric and quantizing fields, intense electric field, and light waves on the ES in HD quantized structures and superlattices are discussed. The content of this book finds six different applications in the arena of nano-science and nanotechnology and the various ES dependent electronic quantities, namely the effective mass, the screening length, the Einstein relation and the elastic constants have been investigated. This book is useful for researchers, engineers and professionals in the fields of Applied Sciences, solid state and materials science, nano-science and technology, condensed matter physics, and allied fields, including courses in semiconductor nanostructures.
Дополнительное описание: 1. Introduction.- 2. The HUP and the ES in HD Kane Type III-V and Opto-Electronic Materials Under Intense Electric Field.- 3. The HUP and the ES in Quantum Wells (QWs) of HD Non-Parabolic Materials.- 4. The HUP and the ES in Nano Wires of HD Non-Parabolic



The Quantum Moment: How Planck, Bohr, Einstein, and Heisenberg Taught Us to Love Uncertainty

Автор: Crease Robert P., Goldhaber Alfred Scharff
Название: The Quantum Moment: How Planck, Bohr, Einstein, and Heisenberg Taught Us to Love Uncertainty
ISBN: 0393351920 ISBN-13(EAN): 9780393351927
Издательство: Wiley
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Цена: 3326.00 р.
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Описание: The fascinating story of how quantum mechanics went mainstream.

Heisenberg`S Quantum Mechanics

Автор: Razavy Mohsen
Название: Heisenberg`S Quantum Mechanics
ISBN: 9814304107 ISBN-13(EAN): 9789814304108
Издательство: World Scientific Publishing
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Цена: 16632.00 р.
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Описание: Presents an account of quantum theory with a much greater emphasis on the Heisenberg equations of motion and the matrix method. This book features a treatment of the fundamental concepts such as the rules of constructing quantum mechanical operators and the classical-quantal correspondence.

Quantized Vortex Dynamics and Superfluid Turbulence

Автор: C.F. Barenghi; R.J. Donnelly; W.F. Vinen
Название: Quantized Vortex Dynamics and Superfluid Turbulence
ISBN: 3642075894 ISBN-13(EAN): 9783642075896
Издательство: Springer
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Цена: 14365.00 р.
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Описание: This book springs from the programme Quantized Vortex Dynamics and Sup- ?uid Turbulence held at the Isaac Newton Institute for Mathematical Sciences (University of Cambridge) in August 2000. The evidence from these experiments and many others is that super?uid turbulence and classical turbulence share many features.


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