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ν=5/2 分数量子霍尔态的局域电荷。

Local charge of the ν = 5/2 fractional quantum Hall state.

机构信息

Department of Physics, Harvard University, 11 Oxford Street, Cambridge, Massachusetts 02138, USA.

出版信息

Nature. 2011 Jan 13;469(7329):185-8. doi: 10.1038/nature09680.

Abstract

Electrons moving in two dimensions under the influence of strong magnetic fields effectively lose their kinetic energy and display exotic behaviour dominated by Coulomb forces. When the ratio of electrons to magnetic flux quanta in the system (ν) is near 5/2, the electrons are predicted to condense into a correlated phase with fractionally charged quasiparticles and a ground-state degeneracy that grows exponentially as these quasiparticles are introduced. The only way for electrons to transform between the many ground states would be to braid the fractional excitations around each other. This property has been proposed as the basis of a fault-tolerant quantum computer. Here we present observations of localized quasiparticles at ν = 5/2, confined to puddles by disorder. Using a local electrometer to compare how quasiparticles at ν = 5/2 and ν = 7/3 charge these puddles, we were able to extract the ratio of local charges for these states. Averaged over several disorder configurations and samples, we found the ratio to be 4/3, suggesting that the local charges are = e/3 and = e/4, where e is the charge of an electron. This is in agreement with theoretical predictions for a paired state at ν = 5/2. Confirming the existence of localized e/4 quasiparticles shows that proposed interferometry experiments to test statistics and computational ability of the state at ν = 5/2 would be possible.

摘要

在强磁场的影响下,二维运动的电子有效地失去了动能,并表现出由库仑力主导的奇异行为。当系统中电子与磁通量量子的比值(ν)接近 5/2 时,预计电子会凝聚成一种相关的相,其中有分数电荷的准粒子,并且随着这些准粒子的引入,基态简并度呈指数增长。电子在许多基态之间转换的唯一方法是将分数激发相互缠绕。这种特性被提议作为容错量子计算机的基础。在这里,我们展示了在ν=5/2 时局域准粒子的观测结果,这些准粒子被无序限制在液滴中。我们使用局部电表来比较ν=5/2 和ν=7/3 的准粒子如何给这些液滴充电,从而能够提取这些状态的局部电荷比。在几个无序配置和样本的平均情况下,我们发现比值为 4/3,这表明局部电荷为 e/3 和 e/4,其中 e 是电子的电荷。这与ν=5/2 时配对态的理论预测相符。确认局域 e/4 准粒子的存在表明,对ν=5/2 态进行统计和计算能力的拟议干涉实验是可行的。

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