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Deterministic time-reversible thermostats: chaos, ergodicity, and the zeroth law of thermodynamics

机译:确定性时间可逆恒温器:混沌,遍历和热力学的零定律

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摘要

The relative stability and ergodicity of deterministic time-reversible thermostats, both singly and in coupled pairs, are assessed through their Lyapunov spectra. Five types of thermostat are coupled to one another through a single Hooke's-law harmonic spring. The resulting dynamics shows that three specific thermostat types, Hoover-Holian, Ju-Bulgac, and Martyna-Klein-Tuckerman, have very similar Lyapunov spectra in their equilibrium four-dimensional phase spaces and when coupled in equilibrium or nonequilibrium pairs. All three of these oscillator-based thermostats are shown to be ergodic, with smooth analytic Gaussian distributions in their extended phase spaces (coordinate, momentum, and two control variables). Evidently these three ergodic and time-reversible thermostat types are particularly useful as statistical-mechanical thermometers and thermostats. Each of them generates Gibbs' universal canonical distribution internally as well as for systems to which they are coupled. Thus they obey the zeroth law of thermodynamics, as a good heat bath should. They also provide dissipative heat flow with relatively small nonlinearity when two or more such temperature baths interact and provide useful deterministic replacements for the stochastic Langevin equation.
机译:确定性时间可逆恒温器的相对稳定性和遍历性,无论是单独的还是成对的,都通过其Lyapunov谱进行评估。五种类型的恒温器通过单个胡克定律谐波弹簧彼此耦合。动力学结果表明,三种特定的恒温器类型,胡佛-霍利安(Hoover-Holian),尤-布尔加克(Ju-Bulgac)和玛蒂娜-克莱因-塔克曼(Martyna-Klein-Tuckerman),在其平衡四维相空间中以及在平衡或非平衡对中具有非常相似的Lyapunov光谱。所有这三个基于振荡器的恒温器均显示为遍历曲线,在其扩展相空间(坐标,动量和两个控制变量)中具有平滑的解析高斯分布。显然,这三种遍历和时间可逆的恒温器类型特别适合用作统计机械温度计和恒温器。它们每个都在内部以及与之耦合的系统内部生成Gibbs的通用规范分布。因此,它们遵循良好热浴应遵循的热力学零定律。当两个或多个这样的温度浴相互作用时,它们还提供具有相对较小非线性的耗散热流,并为随机的Langevin方程提供了有用的确定性替代方法。

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