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Entropy and variance squeezing of two coupled modes interacting with a two-level atom: Frequency converter type

机译:与两级原子相互作用的两种耦合模式的熵和方差压缩:变频器类型

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A modified Jaynes-Cummings model which consists of a two-level atom interacting with two modes of the electromagnetic field is introduced. More precisely we have considered a Hamiltonian model that includes two types of interaction: One is the field-field (frequency converter type) and the other is the atom-field interaction. By invoking a canonical transformation an exact solution of the wave function in the Schrodinger picture is obtained. The result presented in this context is used to discuss the atomic inversion as well as the entropy squeezing and variance squeezing phenomena. We have shown that the existence of the second field coupling parameter reduces the amount of squeezing in all quadratures, while the effect of the detuning parameter would lead to the superstructure phenomenon which becomes more pronounced upon increasing the mean photon numbers, in the states which are taken to be converter states. (c) 2005 Elsevier Inc. All rights reserved.
机译:介绍了一种改进的Jaynes-Cummings模型,该模型由一个与两个电磁场模式相互作用的两级原子组成。更准确地说,我们考虑了包含两种相互作用类型的汉密尔顿模型:一种是场-场(变频器类型),另一种是原子-场相互作用。通过调用规范变换,可以获得薛定inger图像中波动函数的精确解。在这种情况下给出的结果用于讨论原子反演以及熵压缩和方差压缩现象。我们已经表明,第二场耦合参数的存在减少了所有正交中的压缩量,而失谐参数的作用将导致超结构现象,该现象在增加平均光子数时变得更加明显。被视为转换器状态。 (c)2005 Elsevier Inc.保留所有权利。

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