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Cavity-Enhanced Real-Time Monitoring of Single-Charge Jumps at the Microsecond Time Scale

机译:以微秒为时标的单次电荷跳跃的腔增强实时监控

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We use fast coherent reflectivity measurements, in a strongly coupled quantum dot micropillar device, to monitor in real time single-charge jumps at the microsecond time scale. Thanks to the strong enhancement of light-matter interaction inside the cavity, and to a close to shot-noise-limited detection setup, the measurement rate is 5 orders of magnitude faster than with previous optical experiments of direct single-charge sensing with quantum dots. The monitored transitions, identified at any given time with a less than 0.2% error probability, correspond to a carrier being captured and then released by a single material defect. This high-speed technique opens the way for the real-time monitoring of other rapid single quantum events, such as the quantum jumps of a single spin.
机译:我们在强耦合的量子点微柱器件中使用快速相干反射率测量,以微秒为单位实时监视单电荷跃迁。得益于腔体内光物质相互作用的强大增强,以及接近散粒噪声限制的检测设置,测量速度比以前的量子点直接单电荷传感光学实验快了5个数量级。 。在任何给定时间以小于0.2%的错误概率识别出的受监视跃迁对应于被单个材料缺陷捕获并释放的载体。这种高速技术为实时监视其他快速单量子事件(例如单自旋的量子跃迁)开辟了道路。

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