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June 7, 2006Physical Review A317 citations

Single-photon Kerr nonlinearities do not help quantum computation

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JSJeffrey H. Shapiro

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Abstract

By embedding an atom capable of electromagnetically induced transparency inside an appropriate photonic-crystal microcavity it may become possible to realize an optical nonlinearity that can impart a -rad-peak phase shift in response to a single-photon excitation. Such a device, if it operated at high fidelity, would then complete a universal gate set for all-optical quantum computation. It is shown here that the causal, noninstantaneous behavior of any ^ (3) nonlinearity is enough to preclude such a high-fidelity operation. In particular, when a single-photon-sensitive ^ (3) nonlinearity has a response time that is much shorter than the duration of the quantum computer's single-photon pulses, essentially no overall phase shift is imparted to these pulses by cross-phase modulation. Conversely, when this nonlinearity has a response time that is much longer than this pulse duration a single-photon pulse can induce a -rad overall phase shift through cross-phase modulation, but the phase noise injected by the causal, noninstantaneous response function precludes this from being a high-fidelity operation.

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Cite This Study

Jeffrey H. Shapiro (2006) studied this question.

synapsesocial.com/papers/6a83320d8847014bd69906cfhttps://doi.org/10.1103/physreva.73.062305
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