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標(biāo)題: Titlebook: Control of Magnetotransport in Quantum Billiards; Theory, Computation Christian V. Morfonios,Peter Schmelcher Book 2017 Springer Internati [打印本頁]

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書目名稱Control of Magnetotransport in Quantum Billiards影響因子(影響力)




書目名稱Control of Magnetotransport in Quantum Billiards影響因子(影響力)學(xué)科排名




書目名稱Control of Magnetotransport in Quantum Billiards網(wǎng)絡(luò)公開度




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書目名稱Control of Magnetotransport in Quantum Billiards被引頻次




書目名稱Control of Magnetotransport in Quantum Billiards被引頻次學(xué)科排名




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書目名稱Control of Magnetotransport in Quantum Billiards讀者反饋




書目名稱Control of Magnetotransport in Quantum Billiards讀者反饋學(xué)科排名





作者: Suggestions    時間: 2025-3-22 00:12
Electrons in Low-Dimensional Mesoscopic Systems,ype, idealized nanoelectronic transport device in which quantum coherence is maintained. Under the associated approximations to the system Hamiltonian, we finally analyze the characteristics of quantum states resulting from low-dimensional confinement.
作者: 多山    時間: 2025-3-22 02:44
,Coherent Electronic Transport: Landauer-Büttiker Formalism,-Büttiker theory of transport in multiterminal structures, which relates the scattering matrix of the system to its electrical conductance. After presenting the general framework, we focus on the linear response regime of transport.
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,Einflu? des Riemenscheibendurchmessers,c, geometrically defined asymptotic scattering channels, highlighting the involved concepts and the main observable interference effects in transmission, Fano resonances and Aharonov-Bohm oscillations.
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,H?chstwerte der Riemenreibung,tions and qualifies as a nanoelectronic current control element. Excerpts and figures from Morfonios and Schmelcher (Phys. Rev. Lett. 113(8):086802, 2014) reprinted with permission. Copyright (2014) by the American Physical Society.
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Introduction,ical phenomena has been pushed to extreme accuracy. The probabilistic character of a system’s behavior immediately brings the question of its controllability into a very specific dichotomy: Absolute certainty about a property prior to its measurement is achieved only by forcing the associated probability to the limit of zero or unity.
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Computational Quantum Transport in Multiterminal and Multiply Connected Structures,connected structures from given inter- and intra-connected subsystems with multiple leads. It is combined with a block-reordered recursive computation of subsystem propagators, thus enabling the efficient investigation of a large diversity of system setups in a highly resolved parameter space.
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Magnetoconductance Switching by Phase Modulation in Arrays of Oval Quantum Billiards,he impact of disorder is addressed in the form of remote impurity scattering, which poses a temperature dependent lower bound for the switching ratio. Excerpts and figures from Morfonios et al. (Phys. Rev. B, 80(3):035301, 2009) reprinted with permission. Copyright (2009) by the American Physical Society.
作者: MOAT    時間: 2025-3-24 00:49
Current Control in Soft-Wall Electron Billiards: Energy-Persistent Scattering in the Deep Quantum Rtions and qualifies as a nanoelectronic current control element. Excerpts and figures from Morfonios and Schmelcher (Phys. Rev. Lett. 113(8):086802, 2014) reprinted with permission. Copyright (2014) by the American Physical Society.
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0075-8450 in the deep quantum regime.Discusses directional transport iIn this book the coherent quantum transport of electrons through two-dimensional mesoscopic structures is explored in dependence of the interplay between the confining geometry and the impact of applied magnetic fields, aiming at conductanc
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作者: 真    時間: 2025-3-24 11:45
,Einflu? des Riemenscheibendurchmessers,-Büttiker theory of transport in multiterminal structures, which relates the scattering matrix of the system to its electrical conductance. After presenting the general framework, we focus on the linear response regime of transport.
作者: 天然熱噴泉    時間: 2025-3-24 16:49
,Einflu? der Riemengeschwindigkeit,tial. Focusing on the interplay between the geometry of the setups and the effects of the magnetic field, it was investigated how special non-universal features in the transmission spectra arise which enable the efficient control of conductance by different underlying mechanisms.
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作者: habile    時間: 2025-3-24 23:49
0075-8450 conductance switching by isolating energy persistent, collimated or magnetically deflected electron paths from Fano resonances. In a multiterminal configuration, the guiding and focusing property of curved boun978-3-319-39831-0978-3-319-39833-4Series ISSN 0075-8450 Series E-ISSN 1616-6361
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Book 2017ted from confined states. Soft-wall potentials are then employed for efficient and robust conductance switching by isolating energy persistent, collimated or magnetically deflected electron paths from Fano resonances. In a multiterminal configuration, the guiding and focusing property of curved boun
作者: 背書    時間: 2025-3-25 11:19
Directional Magnetotransport Control in Multiterminal Focusing Quantum Billiards, of leads connected by high transmittivity. It is shown that the elliptic boundary is responsible for these very special transport properties. At higher field strengths edge states form and the multiterminal transmission coefficients are determined by the topology of the billiard. The combination of
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Electrons in Low-Dimensional Mesoscopic Systems,nate the properties of current-carrying electrons. Within this mesoscopic?regime, the concept of an ‘open electron billiard’ is introduced as a prototype, idealized nanoelectronic transport device in which quantum coherence is maintained. Under the associated approximations to the system Hamiltonian
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Computational Quantum Transport in Multiterminal and Multiply Connected Structures,sport are derived. To maintain a high flexibility in setup variations, the numerical computation is performed on a tight-binding grid upon which arbitrary device confining potentials can be defined. After a brief review of relevant computational schemes, we introduce the matrix form of the discretiz
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作者: 和平主義    時間: 2025-3-26 16:35
Current Control in Soft-Wall Electron Billiards: Energy-Persistent Scattering in the Deep Quantum R two-terminal transport setup. In particular, the isolation of energetically persistent scattering pathways from the resonant manifold of an elongated electron billiard in the deep quantum regime is demonstrated. This in turn enables efficient conductance switching at varying temperature and Fermi v
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Summary, Conclusions, and Perspectives,adapted to open quantum billiard devices, for which the magnetotransport was then analyzed in dependence of the characteristics of the confining potential. Focusing on the interplay between the geometry of the setups and the effects of the magnetic field, it was investigated how special non-universa
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978-3-319-39831-0Springer International Publishing Switzerland 2017
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Mitteilungen über Forschungsarbeitenl extent this statement would be carried two centuries later with the establishment of quantum theory in the description of nature. The claim as such, expanded beyond its original context as the epitome of empiricism, indeed applies to what has become the standard concept by which the realm of the m
作者: 容易生皺紋    時間: 2025-3-27 16:09
,Einflu? des Riemenscheibendurchmessers,nate the properties of current-carrying electrons. Within this mesoscopic?regime, the concept of an ‘open electron billiard’ is introduced as a prototype, idealized nanoelectronic transport device in which quantum coherence is maintained. Under the associated approximations to the system Hamiltonian
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https://doi.org/10.1007/978-3-662-01985-6sport are derived. To maintain a high flexibility in setup variations, the numerical computation is performed on a tight-binding grid upon which arbitrary device confining potentials can be defined. After a brief review of relevant computational schemes, we introduce the matrix form of the discretiz
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Lecture Notes in Physicshttp://image.papertrans.cn/c/image/237391.jpg
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