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悬浮量子点声子腔中的单电子-声子相互作用

Single-electron-phonon interaction in a suspended quantum dot phonon cavity.

作者信息

Weig E M, Blick R H, Brandes T, Kirschbaum J, Wegscheider W, Bichler M, Kotthaus J P

机构信息

Center for NanoScience & Sektion Physik, Ludwig-Maximilians-Universität, 80539 Münich, Germany.

出版信息

Phys Rev Lett. 2004 Jan 30;92(4):046804. doi: 10.1103/PhysRevLett.92.046804.

Abstract

An electron-phonon cavity consisting of a quantum dot embedded in a freestanding GaAs/AlGaAs membrane is characterized using Coulomb blockade measurements at low temperatures. We find a complete suppression of single electron tunneling around zero bias leading to the formation of an energy gap in the transport spectrum. The observed effect is induced by the excitation of a localized phonon mode confined in the cavity. This phonon blockade of transport is lifted at discrete magnetic fields where higher electronic states with nonzero angular momentum are brought into resonance with the phonon energy.

摘要

通过在低温下进行库仑阻塞测量,对一个由嵌入独立式砷化镓/铝镓砷薄膜中的量子点构成的电子-声子腔进行了表征。我们发现在零偏压附近单电子隧穿被完全抑制,导致在传输谱中形成一个能隙。所观察到的效应是由限制在腔内的局域声子模式的激发引起的。在离散磁场下,这种传输的声子阻塞被解除,此时具有非零角动量的较高电子态与声子能量发生共振。

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