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Thermal response of a Fermi-Pasta-Ulam chain with Andersen thermostats

机译:与Andersen恒温器的Fermi-Pasta-Ulam链的热响应

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摘要

The linear response to temperature variations is well characterised for equilibrium systems but a similar theory is not available, for example, for inertial heat conducting systems, whose paradigm is the Fermi-Pasta-Ulam (FPU) model driven by two different boundary temperatures. For models of inertial systems out of equilibrium, including relaxing systems, we show that Andersen thermostats are a natural tool for studying the thermal response. We derive a fluctuation-response relation that allows to predict thermal expansion coefficients or the heat capacitance in nonequilibrium regimes. Simulations of the FPU chain of oscillators suggest that estimates of susceptibilities obtained with our relation are better than those obtained via a small perturbation
机译:对温度变化的线性响应很好地表征了平衡系统,但是类似的理论不可用,例如,对于惯性导热系统,其范式是由两个不同的边界温度驱动的Fermi-Pasta-ULAM(FPU)模型。 对于均衡的惯性系统的模型,包括放松系统,我们表明安德森恒温器是研究热响应的自然工具。 我们得出了波动响应关系,其允许预测非纤维制度中的热膨胀系数或热电容。 振荡器振荡链的模拟表明,随着我们的关系获得的敏感性估计优于通过小扰动获得的估计

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