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Projective measurements via linear optics and photon detectors

机译:通过线性光学和光子探测器进行投影测量

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摘要

The possibility of implementing a given photonic projective measurement with linear optics and photon detectors is discussed. This problem can be viewed as a single-shot discrimination of orthogonal pure quantum states. It is particularly shown that any two orthogonal states can be perfectly discriminated using only linear optics, photon counting, coherent ancillary states, and feedforward. This means that one can construct any binary projective measurement with these means, but without any nonclassical ancillary state. The statement holds in the asymptotic limit of a large number of these physical resources. To extend this result, we also address the problem of discriminating a simple set of three orthogonal states.
机译:讨论了使用线性光学器件和光子探测器实现给定光子投射测量的可能性。这个问题可以看作是正交纯量子态的单次判别。特别表明,仅使用线性光学,光子计数,相干辅助状态和前馈就可以完美地区分任意两个正交状态。这意味着可以用这些方法构造任何二元投影测量,但没有任何非经典的辅助状态。该语句处于大量这些物理资源的渐近极限中。为了扩展该结果,我们还解决了区分三个正交状态的简单集合的问题。

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