Romero-Rochín Víctor
Instituto de Física, Universidad Nacional Autónoma de México and Apartado Postal 20-364, 01000 México D.F. Mexico.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Aug;88(2):022144. doi: 10.1103/PhysRevE.88.022144. Epub 2013 Aug 28.
We show that states of macroscopic systems with purported absolute negative temperatures are not stable under small, yet arbitrary, perturbations. We prove the previous statement using the fact that, in equilibrium, the entropy takes its maximum value. We discuss that, while Ramsey theoretical reformulation of the second law for systems with negative temperatures is logically correct, it must be a priori assumed that those states are in thermodynamic equilibrium. Since we argue that those states cannot occur, reversible processes are impossible, and, thus, Ramsey identification of absolute negative temperatures is untenable.
我们表明,具有所谓绝对负温度的宏观系统状态在微小但任意的扰动下是不稳定的。我们利用在平衡状态下熵取最大值这一事实来证明上述陈述。我们讨论了,虽然对于负温度系统,拉姆齐对第二定律的理论重新表述在逻辑上是正确的,但必须先验地假设这些状态处于热力学平衡。由于我们认为这些状态不可能出现,可逆过程是不可能的,因此,拉姆齐对绝对负温度的认定是站不住脚的。