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Measuring the distribution of current fluctuations through a Josephson junction with very short current pulses

机译:在非常短的电流脉冲下测量通过约瑟夫森结的电流波动的分布

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摘要

We propose to probe the distribution of current fluctuations by means of the escape probability histogram of a Josephson junction (JJ), obtained using very short bias current pulses in the adiabatic regime, where the low-frequency component of the current fluctuations plays a crucial role. We analyze the effect of the third cumulant on the histogram in the small skewness limit, and address two concrete examples assuming realistic parameters for the JJ. In the first one we study the effects due to fluctuations produced by a tunnel junction, finding that the signature of higher cumulants can be detected by taking the derivative of the escape probability with respect to current. In such a realistic situation, though, the determination of the whole distribution of current fluctuations requires an amplification of the cumulants. As a second example we consider magnetic flux fluctuations acting on a SQUID produced by a random telegraph source of noise.
机译:我们建议通过绝热状态中使用非常短的偏置电流脉冲获得的约瑟夫森结(JJ)的逸出概率直方图来探究电流波动的分布,其中电流波动的低频成分起着至关重要的作用。我们分析了第三种累积量在小偏斜度限制下对直方图的影响,并给出了两个实际示例,这些示例假设了JJ的实际参数。在第一个研究中,我们研究了由隧道结产生的波动引起的影响,发现可以通过采用相对于电流的逃逸概率的导数来检测更高累积量的特征。但是,在这种现实的情况下,确定电流波动的整体分布需要放大累积量。作为第二个示例,我们考虑作用在由随机电报噪声源产生的SQUID上的磁通量波动。

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