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驱动费米海中的分数电荷零能量单粒子激发

Fractionally Charged Zero-Energy Single-Particle Excitations in a Driven Fermi Sea.

作者信息

Moskalets Michael

机构信息

Department of Metal and Semiconductor Physics, NTU "Kharkiv Polytechnic Institute", 61002 Kharkiv, Ukraine.

出版信息

Phys Rev Lett. 2016 Jul 22;117(4):046801. doi: 10.1103/PhysRevLett.117.046801. Epub 2016 Jul 18.

Abstract

A voltage pulse of a Lorentzian shape carrying half of the flux quantum excites out of a zero-temperature Fermi sea an electron in a mixed state, which looks like a quasiparticle with an effectively fractional charge e/2. A prominent feature of such an excitation is a narrow peak in the energy distribution function lying exactly at the Fermi energy μ. Another spectacular feature is that the distribution function has symmetric tails around μ, which results in a zero-energy excitation. This sounds improbable since at zero temperature all available states below μ are fully occupied. The resolution lies in the fact that such a voltage pulse also excites electron-hole pairs, which free some space below μ and thus allow a zero-energy quasiparticle to exist. I discuss also how to address separately electron-hole pairs and a fractionally charged zero-energy excitation in an experiment.

摘要

一个携带半个磁通量子的洛伦兹形状的电压脉冲,能从零温费米海中激发一个处于混合态的电子,该电子看起来像一个有效电荷为e/2的准粒子。这种激发的一个显著特征是能量分布函数中恰好位于费米能μ处的一个窄峰。另一个惊人的特征是分布函数在μ周围有对称的尾部,这导致了零能量激发。这听起来不太可能,因为在零温度下,μ以下所有可用态都被完全占据。解决办法在于这样一个电压脉冲也能激发电子 - 空穴对,这些电子 - 空穴对在μ以下释放出一些空间,从而允许零能量准粒子存在。我还讨论了在实验中如何分别处理电子 - 空穴对和分数电荷零能量激发。

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