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Fluctuation-dissipation relation from the nonequilibrium dynamics of a nonlinear open quantum system

机译:非线性开放量子系统非Quilibibrimics的波动耗散关系

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Continuing our inquiry into the conditions when fluctuation-dissipation relations (FDR) may appear in the context of nonequilibrium dynamics of open quantum systems (over and beyond the conventional FDR from linear response theory) we turn to non-Gaussian systems and consider this issue for an anharmonic quantum oscillator interacting with a scalar quantum field bath. We present the general nonperturbative expressions for the rate of energy (power) exchange between the anharmonic oscillator and its thermal bath. For the cases that a stable final equilibrium state exists, and the nonstationary components of the two-point functions of the anharmonic oscillator have negligible contributions to the power balance, we can show nonperturbatively that equilibration implies an FDR for the anharmonic oscillator. We then use a weakly anharmonic oscillator as an example to illustrate the validity of those two assumptions and show that in the weak anhamonicity limit, they are satisfied according to our first-order perturbative results..
机译:在开放量子系统(从线响应理论的传统FDR超出和超出传统FDR)的情况下,继续我们的询问,当波动耗散关系(FDR)可能出现在非Qualibics(从线性响应理论的传统FDR)的上下文中,我们转向非高斯系统并考虑这个问题一种anharmonic量子振荡器与标量子柱浴相互作用。我们展示了Anharmonic振荡器与其热浴之间的能量(电力)交换速率的一般非触发表达。对于存在稳定的最终均衡状态的情况,并且Anharmonic振荡器的两点函数的非间断组件对功率平衡具有可忽略的贡献,我们可以显示非耐磨地,平衡意味着Anharmonic振荡器的FDR。然后我们使用弱谐波振荡器作为示例,以说明这两个假设的有效性并显示在弱厌氧极限下,他们按照我们的一阶扰动结果满意。

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