Optimal implementation of two-qubit linear-optical quantum filters

J. Fiurášek, Robert Stárek, M. Mičuda
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引用次数: 1

Abstract

We design optimal interferometric schemes for implementation of two-qubit linear optical quantum filters diagonal in the computational basis. The filtering is realized by interference of the two photons encoding the qubits in a multiport linear optical interferometer, followed by conditioning on presence of a single photon in each output port of the filter. The filter thus operates in the coincidence basis, similarly to many linear optical unitary quantum gates. Implementation of the filter with linear optics may require an additional overhead in terms of reduced overall success probability of the filtering and the optimal filters are those that maximize the overall success probability. We discuss in detail the case of symmetric real filters and extend our analysis also to asymmetric and complex filters.
双量子位线性光学量子滤波器的优化实现
我们在计算基础上设计了实现双量子位线性光学量子滤波器对角线的最佳干涉方案。滤波是通过在多端口线性光学干涉仪中编码量子位的两个光子的干涉来实现的,然后在滤波器的每个输出端口中存在单个光子进行调节。因此,滤波器在符合基础上工作,类似于许多线性光学单一量子门。使用线性光学实现滤波器可能需要额外的开销,以降低滤波的总体成功概率,而最佳滤波器是那些使总体成功概率最大化的滤波器。我们详细讨论了对称实滤波器的情况,并将我们的分析扩展到非对称和复杂滤波器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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