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Measurement-induced coherent control of non-Gaussian operations on quantum state preparation

机译:量子态制剂的非高斯操作的测量诱导的相干控制

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Quantum state preparation is an essential ingredient in quantum information processing. In this letter, based on quantum coherent control induced by Bell measurement, non-Gaussian operations, namely adding (subtracting) one single photon to (from) Gaussian-like input signal field, has been implemented to generate a single-photon-added and -subtracted coherent (SPASC) superposition state. In order to carry out the coherent control, a specified conceptual experiment apparatus has been proposed. By adjusting beamsplitter reflectivity and parameter gain of χ(2) nonlinear crystal, the ingredients of this superposition state can be manipulated. With the help of quasi-probability distribution Wigner function, the evolution of non-classical properties with two controllable parameters can be visualized for this superposition state. The results show a quantum non-Gaussian superposition state can be generated by the measurement-induced coherent control scheme.
机译:量子态制剂是量子信息处理中的必要成分。在这封信中,基于贝尔测量,非高斯操作引起的量子相干控制,即加入(减去)一个单个光子到(从)高斯的输入信号字段,以产生单个光子添加和 - - 过度的相干(SPASC)叠加状态。为了执行相干控制,已经提出了一种指定的概念实验装置。通过调节光束分布反射率和参数增益的χ(2)非线性晶体,可以操纵该叠加状态的成分。借助准概率分布的Wigner函数,可以针对该叠加状态可视化具有两个可控参数的非经典特性的演变。结果显示了量子非高斯叠加状态可以通过测量诱导的相干控制方案产生。

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