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Implementation of projective measurements with linear optics and continuous photon counting

机译:利用线性光学和连续光子计数实现投影测量

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摘要

We investigate the possibility of implementing a given projection measurement using linear optics and arbitrarily fast feedforward based on the continuous detection of photons. In particular, we systematically derive the so-called Dolinar scheme that achieves the minimum-error discrimination of binary coherent states. Moreover, we show that the Dolinar-type approach can also be applied to projection measurements in the regime of photonic-qubit signals. Our results demonstrate that for implementing a projection measurement with linear optics, in principle, unit success probability may be approached even without the use of expensive entangled auxiliary states, as they are needed in all known (near-)deterministic linear-optics proposals.
机译:我们研究了使用线性光学器件和基于光子连续检测的任意快速前馈来实现给定投影测量的可能性。特别是,我们系统地推导出所谓的Dolinar方案,该方案实现了二进制相干态的最小误差判别。此外,我们表明Dolinar型方法也可以应用于光子量子位信号体制中的投影测量。我们的结果表明,对于使用线性光学进行投影测量,原则上,即使不使用昂贵的纠缠辅助状态,也可能会达到单位成功概率,因为在所有已知的(确定性)线性光学建议中都需要使用它们。

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