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Experimental orthogonalization of highly overlapping quantum states with single photons

机译:单光子高重叠量子态的实验正交化

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摘要

We experimentally realize a nonlinear quantum protocol for single-photon qubits with linear optical elements and appropriate measurements. Quantum nonlinearity is induced by postselecting the polarization qubit based on a measurement result obtained for the spatial degree of freedom of the single photon which plays the role of a second qubit. Initially, both qubits are prepared in the same quantum state and an appropriate two-qubit unitary transformation entangles them before the measurement of the spatial part. We analyze the result by quantum state tomography of the polarization degree of freedom. We then demonstrate the usefulness of the protocol for quantum state discrimination by iteratively applying it to either of two slightly different quantum states which rapidly converge to different orthogonal states by the iterative dynamics. Our work creates an opportunity to employ effective quantum nonlinear evolution in quantum information processing.
机译:我们通过线性光学元件实验地实现了用于单光子Qubits的非线性量子方案和适当的测量。 通过基于为单个光子的空间自由度获得的测量结果来突出偏振Qubit来诱导量子非线性,该测量结果发挥第二Qubit的作用。 最初,在相同的量子状态下制备两个Qubits,并且在空间部分测量之前,适当的双时额定变换缠绕它们。 我们通过偏振自由度的量子断层扫描来分析结果。 然后,我们通过迭代地将其应用于略微不同的量子状态中的两个略微不同的量子状态中的任一种来展示量子辨别的有用性,这通过迭代动态快速收敛到不同的正交状态。 我们的工作创造了在量子信息处理中使用有效量子非线性演化的机会。

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