论文标题

单电子微晶片器中的非平衡相变

Nonequilibrium phase transition in a single-electron micromaser

论文作者

Brange, Fredrik, Deger, Aydin, Flindt, Christian

论文摘要

相变发生在各种物理系统中,其特征是可观察到的物理可观察到的突然变化,以应对外部控制参数的变化。相变不限于平衡情况,而是在经典和量子机械系统的非平衡环境中找到。在这里,我们研究了由微波腔组成的单电子微剂中的非平衡相变,该微波腔由由电子传输驱动的双量子点驱动。对于弱电子 - 光子耦合,只有一小部分转移的电子导致光子发射到腔中,从本质上讲,该腔体保持空腔。但是,随着耦合的增加,许多光子突然发射到腔中。我们采用了全面计数统计和Lee-Yang理论中的思想和概念,我们根据阶乘瞬间生成电子电荷传输功能的动态零分析了这种非平衡相变,并且我们发现可以通过较高阶段累积物的短时测量结果来预测相变。这些结果为在开放量子系统中进一步研究关键行为铺平了道路。

Phase transitions occur in a wide range of physical systems and are characterized by the abrupt change of a physical observable in response to the variation of an external control parameter. Phase transitions are not restricted to equilibrium situations but can also be found in nonequilibrium settings, both for classical and quantum mechanical systems. Here, we investigate a nonequilibrium phase transition in a single-electron micromaser consisting of a microwave cavity that is driven by the electron transport in a double quantum dot. For weak electron-photon couplings, only a tiny fraction of the transferred electrons lead to the emission of photons into the cavity, which essentially remains empty. However, as the coupling is increased, many photons are suddenly emitted into the cavity. Employing ideas and concepts from full counting statistics and Lee-Yang theory, we analyze this nonequilibrium phase transition based on the dynamical zeros of the factorial moment generating function of the electronic charge transport, and we find that the phase transition can be predicted from short-time measurements of the higher-order factorial cumulants. These results pave the way for further investigations of critical behavior in open quantum systems.

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