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Titlebook: Quantum-Classical Analogies; Daniela Dragoman,Mircea Dragoman Book 2004 Springer-Verlag Berlin Heidelberg 2004 Nanodevices.Quantum optics.

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書(shū)目名稱Quantum-Classical Analogies
編輯Daniela Dragoman,Mircea Dragoman
視頻videohttp://file.papertrans.cn/782/781558/781558.mp4
概述Wide-ranging implications, both for our fundamental understanding of quantum mechanics and for new applications in the area of device physics and quantum computing.Includes supplementary material:
叢書(shū)名稱The Frontiers Collection
圖書(shū)封面Titlebook: Quantum-Classical Analogies;  Daniela Dragoman,Mircea Dragoman Book 2004 Springer-Verlag Berlin Heidelberg 2004 Nanodevices.Quantum optics.
描述.It is unanimously accepted that the quantum and the classical descriptions of the physical reality are very different, although any quantum process is "mysteriously" transformed through measurement into an observable classical event. Beyond the conceptual differences, quantum and classical physics have a lot in common. And, more important, there are classical and quantum phenomena that are similar although they occur in completely different contexts. For example, the Schr?dinger equation has the same mathematical form as the Helmholtz equation, there is an uncertainty relation in optics very similar to that in quantum mechanics, and so on; the list of examples is very long. Quantum-classical analogies have been used in recent years to study many quantum laws or phenomena at the macroscopic scale, to design and simulate mesoscopic devices at the macroscopic scale, to implement quantum computer algorithms with classical means, etc. On the other hand, the new forms of light – localized light, frozen light – seem to have more in common with solid state physics than with classical optics. So these analogies are a valuable tool in the quest to understand quantum phenomena and in the sea
出版日期Book 2004
關(guān)鍵詞Nanodevices; Quantum optics; algorithms; electromagnetic wave; mechanics; quantum computer; quantum comput
版次1
doihttps://doi.org/10.1007/978-3-662-09647-5
isbn_softcover978-3-642-05766-3
isbn_ebook978-3-662-09647-5Series ISSN 1612-3018 Series E-ISSN 2197-6619
issn_series 1612-3018
copyrightSpringer-Verlag Berlin Heidelberg 2004
The information of publication is updating

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Optical Analogs for Multilevel Quantum Systems,describing the envelope wavefunction in the conduction band and the other describing the envelope wavefunction in the valence band. It was shown that such an object is equivalent to a succession of directional couplers, where the electromagnetic field in each of these couplers is the sum of the fiel
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Quantum/Classical Nonlinear Phenomena,e Schr?dinger equation. In certain cases, constituents of the multi-particle system, for example electrons or atoms, can be described by the single-particle linear Schr?dinger equation, which incorporates the presence of the other quantum particles in the effective mass and/or the periodic potential
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Quantum/Classical Phase Space Analogies,his space called the Hamiltonian. In classical mechanics, the points in the phase space represent dynamically possible states of a physical system while the Hamiltonian determines a class of curves in the phase space that can be viewed as the dynamically possible histories of the system. A unique dy
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Analogies Between Quantum and Classical Computing,tions that are performed in a binary basis. The binary basis has only two numbers, 0 and 1, which constitute the two possible logical values of the elementary unit of classical information, called the bit. A bit has physical reality. In classical computers it is identified with the charge of a capac
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Other Quantum/Classical Analogies,his book cannot occupy a whole chapter, whilst at the same time, they would not fit as sections of other chapters in the book. There is no direct link between the analogies presented in this chapter. This is a heterogeneous gathering of quantum/classical similarities, in contrast to the more homogen
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