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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Nonlinear dynamical evolution of the driven two-photon Jaynes-Cummings model - art. no. 043812
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Nonlinear dynamical evolution of the driven two-photon Jaynes-Cummings model - art. no. 043812

机译:驱动的两光子Jaynes-Cummings模型的非线性动力学演化-艺术。没有。 04381​​2

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摘要

The driven two-photon. Jaynes-Cummings model (JCM) exhibits a collapse and revival phenomenon in its mean photon number on a time scale much larger than the periodic revival time for two-state inversion in the usual two-photon JCM. The rime scale of revivals for these oscillations is much larger than the corresponding time scale for the driven one-photon JCM and can be explained with the Hamiltonian of type H-eta = +/- root(J(eta)dagger + alpha P-eta)(2)(J(eta) + alpha P-eta)(2) constructed explicitly for this purpose. The effect of Stark shifts is also studied and it is observed that the dynamics is strongly influenced by such Stark shifts both at early stages as well as at late stages of the evolution but in different ways, and thus Stark shifts play a significant role in determining the dynamical evolution of the system. [References: 21]
机译:驱动的两个光子。 Jaynes-Cummings模型(JCM)在其平均光子数上表现出崩溃和复兴现象,其时间尺度远大于通常的两光子JCM中的两态反转的周期性复兴时间。这些振荡的复兴边缘尺度比被驱动的单光子JCM的相应时间尺度大得多,并且可以用H-eta = +/-根(J(eta)dagger + alpha P-为此目的明确构造的eta)(2)(J(eta)+ alpha P-eta)(2)。还研究了Stark位移的影响,并且观察到动力学在这种演化的早期和晚期都受到这种Stark位移的强烈影响,但是以不同的方式发生,因此Stark位移在确定过程中起着重要的作用。系统的动态演化。 [参考:21]

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