Ultrafast Wigner transport in quantum wires

被引:0
|
作者
Mihail Nedjalkov
Dragica Vasileska
Emanouil Atanassov
Vassil Palankovski
机构
[1] Institute for Microelectronics,Advanced Material and Device Analysis Group
[2] TU Wien,Department of Electrical Engineering
[3] Arizona State University,undefined
[4] IPP,undefined
[5] Bulgarian Academy of Sciences,undefined
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关键词
Wigner transport; Electron-phonon interaction; Ultrafast evolution; Confined system;
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学科分类号
摘要
Two quantum-kinetic models, governing the transport of an initial highly non-equilibrium carrier distribution generated locally in a nanowire, are explored. Dissipation processes due to phonons govern the carrier relaxation, which at early stages of the evolution is characterized by the lack of energy conservation in the collisions. The models are analyzed and approached numerically by a backward Monte Carlo method. The basic difference between them is in the way of treatment of the finite collision duration time. The latter introduces quantum effects of broadening and retardation, ultrafast spatial transfer and modification of the classical trajectories, which are demonstrated in the presented simulation results.
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页码:235 / 238
页数:3
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