论文标题

非对称Sherrington-Kirkpatrick模型的非平衡热力学

Nonequilibrium thermodynamics of the asymmetric Sherrington-Kirkpatrick model

论文作者

Aguilera, Miguel, Igarashi, Masanao, Shimazaki, Hideaki

论文摘要

大多数天然系统远非平衡,表现出时间 - 对称,不可逆的动力学,其特征是熵产生,同时将能量和物质与环境交换。尽管随机热力学是小型系统不可逆动力学的基础,但较大,更复杂的系统的非平衡热力学仍未得到探索。在这里,我们研究了不对称的Sherrington-Kirkpatrick模型,该模型具有同步和异步更新,作为大规模非平衡过程的典型示例。使用路径积分方法,我们计算轨迹上的生成功能,获得阶参数,路径熵和无限大型网络的稳态熵产生的精确解。熵产生在临界秩序相变的峰值,但对于准确定性无序动力学而言,熵的生产峰值明显更大。因此,在不同的情况下,熵产生可以增加,需要多个热力学数量才能准确描述系统。这些结果有助于发展大规模物理和生物系统及其相变的非平衡热力学的精确分析理论。

Most natural systems operate far from equilibrium, displaying time-asymmetric, irreversible dynamics characterized by a positive entropy production while exchanging energy and matter with the environment. Although stochastic thermodynamics underpins the irreversible dynamics of small systems, the nonequilibrium thermodynamics of larger, more complex systems remains unexplored. Here, we investigate the asymmetric Sherrington-Kirkpatrick model with synchronous and asynchronous updates as a prototypical example of large-scale nonequilibrium processes. Using a path integral method, we calculate a generating functional over trajectories, obtaining exact solutions of the order parameters, path entropy, and steady-state entropy production of infinitely large networks. Entropy production peaks at critical order-disorder phase transitions, but is significantly larger for quasi-deterministic disordered dynamics. Consequently, entropy production can increase under distinct scenarios, requiring multiple thermodynamic quantities to describe the system accurately. These results contribute to developing an exact analytical theory of the nonequilibrium thermodynamics of large-scale physical and biological systems and their phase transitions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源