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Quantum-state transfer between atom and macroscopically distinguishable cavity field in Jaynes-Cummings model

机译:Jaynes-Cummings模型中原子与宏观可分辨腔场之间的量子态转移

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摘要

We present a scheme for transferring quantum state between atom and cavity field in Jaynes-Cummings model (JC) in the aid of spin-echo-like technique. It is based on the facts that the atom in a cavity can induce the generation of modified coherent states (MCSs), which can be shown to be macroscopically distinguishable, and the anti-commutation relation between the Hamiltonian and the z-component Pauli matrix. We show that this scheme is applicable for a class of cavity field states. The application on two-cavity system provides an alternative scheme for preparation of non-local superpositions of quasi-classical light states. Numerical simulation shows that the proposed schemes are efficient.
机译:我们提出了一种类似自旋回波技术在Jaynes-Cummings模型(JC)中在原子和腔场之间转移量子态的方案。基于这样的事实,空腔中的原子可以诱导产生改进的相干态(MCSs),该相干态在宏观上是可区分的,并且可以表示哈密顿量与z分量Pauli矩阵之间的反交换关系。我们证明了该方案适用于一类腔场状态。在两腔系统上的应用为准经典光态的非局部叠加的制备提供了一种替代方案。数值仿真表明,所提方案是有效的。

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