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Optical continuous-variable quadratic phase gate via Faraday interaction
DOI:10.1364/OE.22.009182.png)
Abstract
En 中文
The continuous-variable (CV) quadratic phase gate is one of the most fundamental CV quantum gates for universal CV quantum computation, while its experimental realization still remains a challenge. Here we propose a novel and experimentally feasible scheme to realize optical CV quadratic phase gate via Faraday interaction in an atomic ensemble. The gate is performed by simply sending an optical beam three times through an atomic medium prepared in coherent spin state. The fidelity of the gate can ideally run up to one. We show that the scheme also works well as a device to generate optical polarization squeezing. Considering the noise effects due to atomic decoherence and light losses, we find that the observed fidelities of gate operation and the attainable degree of polarization squeezing are still quite high. (C) 2014 Optical Society of America
Keywords:
QUANTUM-NONDEMOLITION MEASUREMENTS
EXPERIMENTAL REALIZATION
ATOMIC ENSEMBLES
LIGHT
SPIN
OPERATOR
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