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Entropy and entanglement of an effective two-level atom interacting with two quantized field modes in squeezed displaced fock states

机译:压缩位移福克态中与两个量子场模式相互作用的有效两能级原子的熵和纠缠

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We have studied the influences of ac-Stark shifts on the field quantum entropy, with "squeezed displaced Fock states" (SDFSs) basis. By a unitary transformation we derive a Raman-coupled Hamiltonian perturbatively in coupling constants. The exact results are employed to perform a careful investigation of the temporal evolution of entropy. A factorization of the initial density operator is assumed, with the privileged field mode being in the SDFS. We invoke the mathematical notion of maximum variation of a function to construct a measure for entropy fluctuations. The results show that the effect of the SDFS changes the quasiperiod of the field entropy evolution and entanglement between the atom and the field. The Rabi oscillation frequency, the collapse and revival times of the atomic coherence are found to have strikingly different photon-intensity dependent than those found previously. The general conclusions reached are illustrated by numerical results. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 52]
机译:我们以“压缩位移福克态”(SDFSs)为基础,研究了ac-Stark位移对场量子熵的影响。通过a变换,我们在耦合常数中摄动了拉曼耦合哈密顿量。精确的结果用于对熵的时间演化进行仔细研究。假定初始密度算子为因式分解,并且优先字段模式位于SDFS中。我们调用函数最大变化的数学概念来构造熵波动的量度。结果表明,SDFS的作用改变了场熵演化和原子与场之间纠缠的拟周期。发现拉比振荡频率,原子相干的崩溃和恢复时间与先前发现的具有显着不同的光子强度相关性。数值结果说明了得出的一般结论。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:52]

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