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首页> 外文期刊>Journal of Statistical Physics >Thermodynamic Properties of the One-Dimensional Two-Component Log-Gas
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Thermodynamic Properties of the One-Dimensional Two-Component Log-Gas

机译:一维两组分对数气体的热力学性质

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摘要

We consider a one-dimensional continuum gas of pointlike positive and negative unit charges interacting via a logarithmic potential. The mapping onto a two-dimensional boundary sine-Gordon field theory with zero bulk mass provides the full thermodynamics (density-fugacity relationship, specific heat, etc.) of the log-gas in the whole stability range of inverse temperatures β<1. An exact formula for the excess chemical potential of a “foreign” particle of an arbitrary charge, put into the log-gas, is derived. The results are checked by a small-β expansion and at the collapse β=1 point. The possibility to go beyond the collapse temperature is discussed.
机译:我们考虑点状正负电荷通过对数电位相互作用的一维连续气体。零质量的二维边界正弦-戈登场理论的映射提供了在逆温度β<1的整个稳定范围内,对数气体具有完整的热力学(密度-烟度关系,比热等)。推导得出了对数气体中任意电荷的“外来”粒子的过量化学势的精确公式。通过小的β膨胀和在坍塌的β= 1点检查结果。讨论了超过崩溃温度的可能性。

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