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半导体超晶格中的超快菲斯克效应。

Ultrafast Fiske effect in semiconductor superlattices.

作者信息

Kosevich Yuriy A, Hummel Anne Beate, Roskos Hartmut G, Köhler Klaus

机构信息

N. N. Semenov Institute of Chemical Physics, Russian Academy of Sciences, 119991 Moscow, Russia.

出版信息

Phys Rev Lett. 2006 Apr 7;96(13):137403. doi: 10.1103/PhysRevLett.96.137403. Epub 2006 Apr 6.

Abstract

The current flowing across a semiconductor superlattice in tilted electric and magnetic fields is known to exhibit resonant enhancement, when Landau states of neighboring wells align at certain ratios of the field strengths. We show that the ultrafast version of this effect, in which coherent electron wave packets are involved, has a profound analogy to the Fiske effect in superconductor Josephson junctions and superfluid weak links, in that the coupling of the tunneling-induced charge oscillations (magneto-Bloch versus Josephson oscillations) to another oscillator (in-plane cyclotron oscillations versus external oscillator modes) opens an elastic rectifying transport channel. We explore the superlattice effect both theoretically and experimentally, and find that the transient self-induced current can be adequately modeled if the damping of both types of coupled electron oscillations is properly taken into account.

摘要

当相邻阱的朗道能级在特定场强比下对齐时,已知在倾斜电场和磁场中流过半导体超晶格的电流会表现出共振增强。我们表明,这种效应的超快版本涉及相干电子波包,它与超导约瑟夫森结和超流体弱连接中的菲斯克效应有着深刻的类比,即隧穿诱导的电荷振荡(磁布洛赫振荡与约瑟夫森振荡)与另一个振荡器(面内回旋加速器振荡与外部振荡器模式)的耦合打开了一个弹性整流传输通道。我们从理论和实验上探索了超晶格效应,发现如果适当考虑两种耦合电子振荡的阻尼,瞬态自感应电流可以得到充分的建模。

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