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Titlebook: Manipulating Quantum Coherence in Solid State Systems; Michael E. Flatté,I. ?ifrea Conference proceedings 20071st edition Springer Science

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發(fā)表于 2025-3-21 18:10:57 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Manipulating Quantum Coherence in Solid State Systems
編輯Michael E. Flatté,I. ?ifrea
視頻videohttp://file.papertrans.cn/624/623402/623402.mp4
概述Presents both semiconducting and superconducting approaches to manipulating quantum coherence in same book.Emphasizes the material and physical properties of semiconductors and superconductors relevan
叢書名稱NATO Science Series II: Mathematics, Physics and Chemistry
圖書封面Titlebook: Manipulating Quantum Coherence in Solid State Systems;  Michael E. Flatté,I. ?ifrea Conference proceedings 20071st edition Springer Science
描述The lectures at the NATO Advanced Study Institute “Manipulating Quantum Coherence in Solid State Systems” presented a fundamental introduction to three solid-state approaches to achieving quantum computation: semiconductor spin-based, semiconductor charge-based, and superconducting approaches. The purpose in bringing together lecturers and students in these disparate areas was to provide the opportunity for communication and cross-fertilization between these three areas, all focusing on the central goal of manipulating quantum coherence in solids. These proceedings present detailed introductions to the fundamentals of the ?rst approach and the third approach, and as such bring together a fundamental pedagogical treatment of the two areas which have progressed the furthest towards realizing a scalable system of manipulable qubits. Semiconductor spin-based approaches to quantum computation have made tremendousadvancesinthepast severalyears. Individual spinshavebeen succe- fully con?ned within self-assembled quantum dots and lithographically-formed quantum dots. Within the self-assembled quantum dots the spin lifetimes have been measured and shown to be longer than 1 ms at low tempera
出版日期Conference proceedings 20071st edition
關(guān)鍵詞Hall effect; Magnetic field; PAS; PED; PES; REM; STEM; Semiconductor; Spin Hall effect; Superconductor; drift
版次1
doihttps://doi.org/10.1007/978-1-4020-6137-0
isbn_softcover978-1-4020-6135-6
isbn_ebook978-1-4020-6137-0Series ISSN 1568-2609
issn_series 1568-2609
copyrightSpringer Science+Business Media B.V. 2007
The information of publication is updating

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Nuclear Spin Dynamics in Semiconductor Nanostructures,nteraction between nuclear and electronic spins provides the basis for an efficient control of nuclear spin dynamics in systems with low dimensionality. We will address topics such as the nuclear spin relaxation time, dynamical nuclear polarization, induced hyperfine magnetic fields, and Overhauser
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Spin Coherence in Semiconductors,iew some recent advances in the physics of semiconductor spin coherence, focusing on phenomena in both bulk and heterostructure systems. Coherent spin ensembles can be generated and manipulated optical, electrical, and magnetic interactions. Optical measurement techniques enable both temporal and sp
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ally complete: every formula is derived, and every theorem pWhyanothertextbook? The statistical community generally agrees that at the upper undergraduate level, or the beginning master’s level, students of statistics should begin to study the mathematical methods of the ?eld. We assume that by then
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M. E. Flattétistics should begin to study the mathematical methods of the ?eld. We assume that by thentheywillhavestudiedtheusualtwo yearcollegesequence,includingcalculus through multiple integrals and the basics of matrix algebra. Therefore, they are ready to learn the foundations of their subject, in much mor
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J. Berezovsky,W. H. Lau,S. Ghosh,J. Stephens,N. P. Stern,D. D. Awschalomally complete: every formula is derived, and every theorem pWhyanothertextbook? The statistical community generally agrees that at the upper undergraduate level, or the beginning master’s level, students of statistics should begin to study the mathematical methods of the ?eld. We assume that by then
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M. R. Geller,E. J. Pritchett,A. T. Sornborger,F. K. Wilhelmally complete: every formula is derived, and every theorem pWhyanothertextbook? The statistical community generally agrees that at the upper undergraduate level, or the beginning master’s level, students of statistics should begin to study the mathematical methods of the ?eld. We assume that by then
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