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Quantum computation using weak nonlinearities: Robustness against decoherence

机译:使用弱非线性的量子计算:抗退相干的鲁棒性

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摘要

We investigate decoherence effects in the recently suggested quantum-computation scheme using weak nonlinearities, strong probe coherent fields, detection, and feedforward methods. It is shown that in the weak-nonlinearity-based quantum gates, decoherence in nonlinear media can be made arbitrarily small simply by using arbitrarily strong probe fields, if photon-number-resolving detection is used. On the contrary, we find that homodyne detection with feedforward is not appropriate for this scheme because in this case decoherence rapidly increases as the probe field gets larger.
机译:我们使用弱非线性,强探针相干场,检测和前馈方法研究了最近提出的量子计算方案中的退相干效应。结果表明,在基于弱非线性的量子门中,如果使用光子数分辨检测,只需使用任意强的探测场,就可以使非线性介质中的去相干性任意减小。相反,我们发现带有前馈的零差检测不适用于此方案,因为在这种情况下,随着探头场变大,相干性迅速增加。

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