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首页> 外文期刊>Quantum information processing >Discrete quantum Fourier transform using weak cross-Kerr nonlinearity and displacement operator and photon-number-resolving measurement under the decoherence effect
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Discrete quantum Fourier transform using weak cross-Kerr nonlinearity and displacement operator and photon-number-resolving measurement under the decoherence effect

机译:在相干效应下使用弱交叉Keer非线性和位移算子和光子数分辨测量的离散量子傅里叶变换

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摘要

We present a scheme for implementing discrete quantum Fourier transform (DQFT) with robustness against the decoherence effect using weak cross-Kerr nonlinearities (XKNLs). The multi-photon DQFT scheme can be achieved by operating the controlled path and merging path gates that are formed with weak XKNLs and linear optical devices. To enhance feasibility under the decoherence effect, in practice, we utilize a displacement operator and photon-number-resolving measurement in the optical gate using XKNLs. Consequently, when there is a strong amplitude of the coherent state, we demonstrate that it is possible to experimentally implement the DQFT scheme, utilizing current technology, with a certain probability of success under the decoherence effect.
机译:我们提出了一种方案,该方案使用弱交叉Keer非线性(XKNLs)来实现对去相干效应具有鲁棒性的离散量子傅立叶变换(DQFT)。多光子DQFT方案可以通过操作受控路径并合并由弱XKNL和线性光学器件形成的路径门来实现。为了提高在退相干效应下的可行性,在实践中,我们使用XKNL在光闸中利用位移算子和光子数分辨测量。因此,当相干态的振幅很大时,我们证明可以利用当前技术以实验性方式实现DQFT方案,并且在去相干效应下具有一定的成功可能性。

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