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首页> 外文期刊>The European Physical Journal B >Symmetric excitation and de-excitation of a cavity QED system
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Symmetric excitation and de-excitation of a cavity QED system

机译:腔QED系统的对称激励和去激励

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摘要

We calculate the time evolution of a cavity-QED system subject to a time dependent sinusoidal drive. The drive is modulated by an envelope function with the shape of a pulse. The system consists of electrons embedded in a semiconductor nanostructure which is coupled to a single mode quantized electromagnetic field. The electron-electron as well as photon-electron interaction is treated exactly using “exact numerical diagonalization” and the time evolution is calculated by numerically solving the equation of motion for the system’s density matrix. We find that the drive causes symmetric excitation and de-excitation where the system climbs up the Jaynes-Cummings ladder and descends back down symmetrically into its original state. This effect is known at low electron-photon coupling strengths but our main finding is how robust the effect is even at ultra-strong coupling strength where the JC-model does not give qualitatively correct results. We investigate the robustness of this symmetric behavior with respect to the drive de-tuning and pulse duration.
机译:我们计算受时间依赖正弦驱动的腔QED系统的时间演化。该驱动器通过具有脉冲形状的包络函数进行调制。该系统由嵌入半导体纳米结构中的电子组成,该半导体纳米结构耦合到单模量化电磁场。使用“精确数值对角化”可精确地处理电子-电子相互作用,并通过数值求解系统密度矩阵的运动方程来计算时间演化。我们发现驱动器引起对称的励磁和反励磁,其中系统爬升Jaynes-Cummings阶梯,然后对称地下降回到其原始状态。在低电子-光子耦合强度下,这种效应是众所周知的,但我们的主要发现是,即使在JC模型无法给出定性正确结果的超强耦合强度下,该效应也是如此稳健。我们针对驱动失谐和脉冲持续时间研究了这种对称行为的鲁棒性。

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