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Dynamical Symmetry Breaking Of Lambda- And Vee-type Three-level Systems On Quantization Of The Field Modes

机译:Lambda和Vee型三能级系统动力学对称性在场模量化上的突破

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We develop a scheme to construct the Hamiltonians of the lambda-, vee- and cascade-type three-level configurations using the generators of SU(3) group. It turns out that this approach provides a well-defined selection rule to give different Hamiltonians for each configuration. The lambda- and vee-type configurations are exactly solved with different initial conditions while taking the two-mode classical and quantized fields. For the classical field, it is shown that the Rabi oscillation of the lambda model is similar to that of the vee model and the dynamics of the vee model can be recovered from lambda model and vice versa simply by inversion. We then proceed to solve the quantized version of both models by introducing a novel Euler matrix formalism. It is shown that this dynamical symmetry exhibited in the Rabi oscillation of two configurations for the semiclassical models is completely destroyed on quantization of the field modes. The symmetry can be restored within the quantized models when both field modes are in the coherent states with large average photon number which is depicted through the collapse and revival of the Rabi oscillations.
机译:我们开发了一种使用SU(3)组的生成器构造lambda,vee和级联类型三级配置的哈密顿量的方案。事实证明,此方法提供了明确定义的选择规则,可以为每种配置提供不同的哈密顿量。 λ型和vee型配置可以在不同的初始条件下精确求解,同时采用双模经典场和量化场。对于经典领域,证明了lambda模型的Rabi振荡与vee模型的相似,并且可以通过反演简单地从lambda模型恢复vee模型的动力学,反之亦然。然后,我们通过引入新颖的Euler矩阵形式主义来求解两个模型的量化版本。结果表明,在半场模型的两种配置的拉比振荡中表现出的这种动力学对称性在场模的量化中被完全破坏了。当两个场模均处于具有大平均光子数的相干状态时,可以在量化模型内恢复对称性,这可以通过拉比振荡的崩溃和复兴来描述。

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