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Experimental realization of a programmable quantum-state discriminator and a phase-covariant quantum multimeter

机译:可编程量子态鉴别器和相变量子万用表的实验实现

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摘要

We present an optical implementation of two programmable quantum measurement devices. The first one serves for unambiguous discrimination of two nonorthogonal states of a qubit. The particular pair of states to be discriminated is specified by the quantum state of a program qubit. The second device can perform von Neumann measurements on a single qubit in any basis located on the equator of the Bloch sphere. Again, the basis is selected by the state of a program qubit. In both cases the data and program qubits are represented by polarization states of photons. The experimental apparatus exploits the fact that two Bell states can be distinguished solely by means of linear optics. The outcome corresponding to the remaining two Bell states represents an inconclusive result.
机译:我们介绍了两个可编程量子测量设备的光学实现。第一个用于明确区分量子位的两个非正交状态。待区分的特定状态对由程序量子位的量子状态指定。第二个设备可以在Bloch球的赤道上的任何单位上以单个量子位执行von Neumann测量。同样,根据程序量子位的状态选择基础。在两种情况下,数据和程序量子位均由光子的偏振态表示。实验装置利用了这样的事实,即可以仅通过线性光学来区分两个贝尔状态。与其余两个贝尔状态相对应的结果表示不确定的结果。

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