论文标题
噪声和库珀对分离器的完整计数统计数据
Noise and full counting statistics of a Cooper pair splitter
论文作者
论文摘要
我们从理论上研究了从超导体发出的电子的噪声和完整计数统计数据,这些电子通过库珀对的分裂并在两个正常状态电极中收集到了两个空间分离的量子点。具有负偏置的排水电极和较大的超导间隙,库珀对分离器的动力学可以通过马尔可夫量子主方程来描述。使用来自完整计数统计的技术,我们评估了电流,它们的噪声功率谱以及输出导线中的功率相关性。当前的波动可以归因于库珀对分裂与通过超导体之间的量子点之间的弹性共沟之间的竞争。在一个制度中,可以在互相关光谱中明确区分这些过程,峰和倾角分别以与弹性共纳尔和库珀对分裂相关的特征频率出现。我们通过分析时间域中的电荷传输波动来证实这种解释,特别是通过研究输出电流的$ g^{(2)} $ - 函数。我们的工作确定了库珀对分裂中涉及的基本运输过程的几个实验签名,并提供了量化其相对优势的特定方法。因此,我们的结果可能有助于指导和解释库珀对分裂中当前波动的未来实验。
We investigate theoretically the noise and the full counting statistics of electrons that are emitted from a superconductor into two spatially separated quantum dots by the splitting of Cooper pairs and further on collected in two normal-state electrodes. With negatively-biased drain electrodes and a large superconducting gap, the dynamics of the Cooper pair splitter can be described by a Markovian quantum master equation. Using techniques from full counting statistics, we evaluate the electrical currents, their noise power spectra, and the power-power correlations in the output leads. The current fluctuations can be attributed to the competition between Cooper pair splitting and elastic cotunneling between the quantum dots via the superconductor. In one regime, these processes can be clearly distinguished in the cross-correlation spectrum with peaks and dips appearing at characteristic frequencies associated with elastic cotunneling and Cooper pair splitting, respectively. We corroborate this interpretation by analyzing the charge transport fluctuations in the time domain, specifically by investigating the $g^{(2)}$-function of the output currents. Our work identifies several experimental signatures of the fundamental transport processes involved in Cooper pair splitting and provides specific means to quantify their relative strengths. As such, our results may help guide and interpret future experiments on current fluctuations in Cooper pair splitters.