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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Entropy and its quantum thermodynamical implication for anomalous spectral systems
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Entropy and its quantum thermodynamical implication for anomalous spectral systems

机译:光谱系统的熵及其量子热力学含义

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摘要

The state function entropy and its quantum thermodynamical implication for two typical dissipative systems with anomalous spectral densities are studied by investigating on their low-temperature quantum behavior. In all cases, it is found that the entropy decays quickly and vanishes as the temperature approaches zero. This reveals a good conformity with the third law of thermodynamics and provides another evidence for the validity of fundamental thermodynamical laws in the quantum dissipative region.
机译:通过研究两个典型的具有异常光谱密度的耗散系统的低温量子行为,研究了它们的状态函数熵及其量子热力学含义。在所有情况下,都发现熵随着温度接近零而迅速衰减并消失。这揭示了与热力学第三定律的良好一致性,并为量子耗散区域中基本热力学定律的有效性提供了另一证据。

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