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Topological vacuum bubbles by anyon braiding

机译:Anyon编织产生的拓扑真空气泡

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摘要

According to a basic rule of fermionic and bosonic many-body physics, known as the linked cluster theorem, physical observables are not affected by vacuum bubbles, which represent virtual particles created from vacuum and self-annihilating without interacting with real particles. Here we show that this conventional knowledge must be revised for anyons, quasiparticles that obey fractional exchange statistics intermediate between fermions and bosons. We find that a certain class of vacuum bubbles of Abelian anyons does affect physical observables. They represent virtually excited anyons that wind around real anyonic excitations. These topological bubbles result in a temperature-dependent phase shift of Fabry–Perot interference patterns in the fractional quantum Hall regime accessible in current experiments, thus providing a tool for direct and unambiguous observation of elusive fractional statistics.
机译:根据铁氧体和玻色子多体物理学的基本规则,即所谓的簇簇定理,物理可观察物不受真空气泡的影响,真空气泡表示由真空和自virtual灭产生的虚拟粒子,而不与真实粒子相互作用。在这里,我们表明必须对服从于费米子和玻色子之间的分数交换统计量的准粒子的准粒子进行修订。我们发现,一类阿比伦真空的真空气泡确实会影响物理观测值。它们代表了围绕真实非等离子激发缠绕的几乎所有激发的正离子。这些拓扑气泡在当前实验中可访问的分数量子霍尔机制中导致法布里-珀罗干涉图样的温度相关相移,从而为直接和明确地观察难以捉摸的分数统计提供了一种工具。

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