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Note on phase space contraction and entropy production in thermostatted Hamiltonian systems

机译:关于恒温哈密顿系统中相空间收缩和熵产生的注意事项

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The phase space contraction and the entropy production rates of Hamiltonian systems in an external field, thermostatted to obtain a stationary state, are considered, While for stationary states with a constant kinetic energy the two rates are formally equal for all numbers of particles N, for stationary states with constant total (kinetic and potential) energy this only obtains for large N. However, in both cases a large number of particles is required to obtain equality with the entropy production rate of Irreversible Thermodynamics. Consequences of this for the positivity of the transport coefficients and for the Onsager relations are discussed. Numerical results are presented for the special case of the Lorentz gas.
机译:考虑了在外场中哈密顿体系的相空间收缩和熵产生速率,并对其进行了调温以获得稳态,而对于具有恒定动能的稳态,两个速率对于所有数量的粒子N在形式上均相等,对于总能量(动能和势能)恒定的稳态只能在大N时获得。但是,在两种情况下,都需要大量粒子才能与不可逆热力学的熵产率相等。讨论了其对输运系数的正性和Onsager关系的影响。给出了洛伦兹气体特殊情况的数值结果。

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