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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Entanglement of a general formalism Lambda-type three-level atom interacting with a non-correlated two-mode cavity field in the presence of nonlinearities
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Entanglement of a general formalism Lambda-type three-level atom interacting with a non-correlated two-mode cavity field in the presence of nonlinearities

机译:非线性存在下一般形式主义Lambda型三能级原子与不相关的二模腔场相互作用的纠缠

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摘要

We investigate the evolution of the atomic quantum entropy and the atom-field entanglement in a system of a Lambda-configuration three-level atom interacting with a two-mode field with additional forms of nonlinearities of both the field and the intensity-dependent atom-field coupling. With the derivation of the unitary operator within the frame of the dressed state and the exact results for the state of the system we perform a careful investigation of the temporal evolution of the entropy. A factorization of the initial density operator is assumed, considering the field to be initially in a non-correlated two-mode squeezed coherent or binomial state. The effects of the mean photon number, detuning, Kerr-like medium and the intensity-dependent coupling functional on the entropy are analysed.
机译:我们研究了Lambda构型三能级原子与双模场相互作用的系统中原子量子熵和原子场纠缠的演化,并且该场和依赖于强度的原子都具有非线性形式场耦合。通过在整修状态的框架内推导一元算子以及系统状态的精确结果,我们对熵的时间演化进行了仔细的研究。假定初始密度算子是因式分解的,则考虑到该场最初处于非相关双模压缩相干或二项式状态。分析了平均光子数,失谐,类克尔介质和强度依赖的耦合函数对熵的影响。

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