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The phonon theory of liquid thermodynamics

机译:液体热力学的声子理论

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Heat capacity of matter is considered to be its most important property because it holds information about system's degrees of freedom as well as the regime in which the system operates, classical or quantum. Heat capacity is well understood in gases and solids but not in the third main state of matter, liquids, and is not discussed in physics textbooks as a result. The perceived difficulty is that interactions in a liquid are both strong and system-specific, implying that the energy strongly depends on the liquid type and that, therefore, liquid energy can not be calculated in general form. Here, we develop a phonon theory of liquids where this problem is avoided. The theory covers both classical and quantum regimes. We demonstrate good agreement of calculated and experimental heat capacity of 21 liquids, including noble, metallic, molecular and hydrogen-bonded network liquids in a wide range of temperature and pressure.. ? 2012 Macmillan Publishers Limited. All rights reserved
机译:物质的热容被认为是其最重要的属性,因为它拥有有关系统的自由度以及系统运行的状态(经典或量子)的信息。气体和固体中的热容是众所周知的,但物质的第三个主要状态(液体)则不然,因此在物理教科书中没有讨论。可以理解的困难是,液体中的相互作用既强又特定于系统,这意味着能量在很大程度上取决于液体类型,因此无法以一般形式计算液体能量。在这里,我们开发了一种避免这种问题的液体声子理论。该理论涵盖了经典和量子机制。我们证明了21种液体在各种温度和压力范围内的计算和实验热容量的良好一致性,包括贵金属,金属,分子和氢键网络液体。 2012 Macmillan Publishers Limited。版权所有

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