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Implementation of generalized quantum measurements for unambiguous discrimination of multiple non-orthogonal coherent states

机译:广义量子测量的实现,用于对多个非正交相干态的明确区分

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Generalized quantum measurements implemented to allow for measurement outcomes termed inconclusive can perform perfect discrimination of non-orthogonal states, a task which is impossible using only measurements with definitive outcomes. Here we demonstrate such generalized quantum measurements for unambiguous discrimination of four non-orthogonal coherent states and obtain their quantum mechanical description, the positive-operator valued measure. For practical realizations of this positive-operator valued measure, where noise and realistic imperfections prevent perfect unambiguous discrimination, we show that our experimental implementation outperforms any ideal standard-quantum-limited measurement performing the same non-ideal unambiguous state discrimination task for coherent states with low mean photon numbers.
机译:为允许测量结果不确定而实施的广义量子测量可以对非正交状态进行完美的判别,这是仅使用具有确定结果的测量无法实现的任务。在这里,我们演示了这种对四个非正交相干态的明确区分的广义量子测量,并获得了它们的量子力学描述,即正算子值测量。对于此正算子有价值的量度的实际实现,其中噪声和现实的缺陷阻止了完美的明确区分,我们证明了我们的实验实现优于对相干态执行相同的非理想明确状态判别任务的理想标准量子限制量度平均光子数低。

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