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Quantum Trajectories and Their Statistics for Remotely Entangled Quantum Bits

机译:Quantum轨迹及其远程缠绕量子位的统计数据

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We experimentally and theoretically investigate the quantum trajectories of jointly monitored transmon qubits embedded in spatially separated microwave cavities. Using nearly quantum-noise-limited superconducting amplifiers and an optimized setup to reduce signal loss between cavities, we can efficiently track measurement-induced entanglement generation as a continuous process for single realizations of the experiment. The quantum trajectories of transmon qubits naturally split into low and high entanglement classes. The distribution of concurrence is found at any given time, and we explore the dynamics of entanglement creation in the state space. The distribution exhibits a sharp cutoff in the high concurrence limit, defining a maximal concurrence boundary. The most-likely paths of the qubits’ trajectories are also investigated, resulting in three probable paths, gradually projecting the system to two even subspaces and an odd subspace, conforming to a “half-parity” measurement. We also investigate the most-likely time for the individual trajectories to reach their most entangled state, and we find that there are two solutions for the local maximum, corresponding to the low and high entanglement routes. The theoretical predictions show excellent agreement with the experimental entangled-qubit trajectory data.
机译:我们在实验和理论上研究了嵌入在空间分离的微波腔中的联合监测的透射码头的量子轨迹。使用几乎量子噪声限制的超导放大器和优化的设置以降低腔之间的信号损耗,我们可以有效地跟踪测量诱导的缠结发电作为实验的单一实现的连续过程。传输Qubits的量子轨迹自然分为低纠缠等级。在任何给定时间都发现了并发的分布,我们探索了状态空间中纠缠创建的动态。分布在高并发极限中呈现急剧截止,定义最大并发边界。还研究了Qubits轨迹的最可能路径,导致三个可能的路径,逐渐将系统投射到两个偶数子空间和奇数子空间,符合“半奇偶校验”测量。我们还调查了各个轨迹达到最纠缠状态的最可能时间,我们发现局部最大值有两个解决方案,对应于低纠缠路线。理论上的预测显示了与实验纠缠Qubit轨迹数据的良好协议。

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