论文标题

跟踪北极子与时间分辨断层扫描中的量子相干性

Tracking quantum coherence in polariton condensates with time-resolved tomography

论文作者

Lüders, Carolin, Pukrop, Matthias, Barkhausen, Franziska, Rozas, Elena, Schneider, Christian, Höfling, Sven, Sperling, Jan, Schumacher, Stefan, Aßmann, Marc

论文摘要

长期量子相干是工程量子设备时的主要挑战之一。但是,易于访问的方法来量化复杂的分解机制,也不容易获得,也不足够稳定的系统。我们利用新颖的相空间方法 - 通过高度奇异的glauber-sudarshan准生物的非高斯卷积表达,以动态监测具有显着增强相干时间的极性凝结物中的量子相干性。通过来自同源性检测数据的此类相空间功能的强度和时间分辨的重建,我们探究了系统的量子信息处理到纳米秒制度的机智。我们的实验发现是通过数值模拟确认的,我们开发了一种方法,该方法使建立算法与我们的方法兼容。与常用的相位空间函数相反,我们的分布可以直接从测量数据(包括不确定性)中进行采样,并通过相相的分布方差进行简单的量子相干性操作度量。因此,我们提出了一个广泛适用的框架和一个探索时间依赖时间的量子现象和资源的平台。

Long-term quantum coherence constitutes one of the main challenges when engineering quantum devices. However, easily accessible means to quantify complex decoherence mechanisms are not readily available, nor are sufficiently stable systems. We harness novel phase-space methods - expressed through non-Gaussian convolutions of highly singular Glauber-Sudarshan quasiprobabilities - to dynamically monitor quantum coherence in polariton condensates with significantly enhanced coherence times. Via intensity- and time-resolved reconstructions of such phase-space functions from homodyne detection data, we probe the systems's resourcefulness for quantum information processing up to the nanosecond regime. Our experimental findings are confirmed through numerical simulations for which we develop an approach that renders established algorithms compatible with our methodology. In contrast to commonly applied phase-space functions, our distributions can be directly sampled from measured data, including uncertainties, and yield a simple operational measure of quantum coherence via the distribution's variance in phase. Therefore, we present a broadly applicable framework and a platform to explore time-dependent quantum phenomena and resources.

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