论文标题
经典旋转气中的手性效应
Chiral effects in classical spinning gas
论文作者
论文摘要
我们考虑了旋转理想气体的统计力学,该机制由经典的非相关旋转颗粒组成。系统的显微镜结构元素是具有非零正确角动量的巨大点颗粒。正确的角动量的规范由自旋确定。正确的角动量的方向不断变化。为旋转系统应用Gibbs规范形式主义,我们构建了一个粒子分布函数,概括了通常的Maxwell-Boltzmann分布和系统的分区函数。该模型证明了由自旋和宏观旋转相互作用引起的一组手性效应,包括熵的变化,热容量,化学势和角动量。
We consider a statistical mechanics of rotating ideal gas consisting of classical non-relativistic spinning particles. The microscopic structure elements of the system are massive point particles with a nonzero proper angular momentum. The norm of proper angular momentum is determined by spin. The direction of proper angular momentum changes continuously. Applying the Gibbs canonical formalism for the rotating system, we construct the one-particle distribution function, generalising the usual Maxwell-Boltzmann distribution, and the partition function of the system. The model demonstrates a set of chiral effects caused by interaction of spin and macroscopic rotation, including the change of entropy, heat capacity, chemical potential and angular momentum.