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Microwave photons emitted by fractionally charged quasiparticles

机译:分数带电准粒子发射的微波光子

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摘要

Strongly correlated low-dimensional systems can host exotic elementary excitations carrying a fractional charge q and potentially obeying anyonic statistics. In the fractional quantum Hall effect, their fractional charge has been successfully determined owing to low frequency shot noise measurements. However, a universal method for sensing them unambiguously and unraveling their intricate dynamics was still lacking. Here, we demonstrate that this can be achieved by measuring the microwave photons emitted by such excitations when they are transferred through a potential barrier biased with a dc voltage Vdc. We observe that only photons at frequencies f below qVdc/h are emitted. This threshold provides a direct and unambiguous determination of the charge q, and a signature of exclusion statistics. Derived initially within the Luttinger model, this feature is also predicted by universal non-equilibrium fluctuation relations which agree fully with our measurements. Our work paves the way for further exploration of anyonic statistics using microwave measurements.
机译:高度相关的低维系统可以承载带有分数电荷q并可能服从非调子统计的奇特元素激发。在分数量子霍尔效应中,由于低频散粒噪声测量,已成功确定了它们的分数电荷。但是,仍然缺少一种通用的方法来清楚地检测它们并弄清它们的复杂动态。在这里,我们证明了可以通过测量由此类激发发射的微波光子在通过直流电压Vdc偏置的势垒的过程中传输来实现。我们观察到仅发射频率低于qVdc / h的光子。该阈值提供了电荷q的直接且明确的确定,并提供了排除统计信息的签名。最初是从Luttinger模型中推导而来的,此特征还可以通过与我们的测量完全一致的通用非平衡波动关系来预测。我们的工作为通过微波测量进一步探索非调子统计量铺平了道路。

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