In this paper we conduct a detailed study of optimal processes applied to the WAdS \(_3\) black hole solution within the context of thermodynamic information geometry. Employing standard thermodynamic metrics, we calculate essential parameters, including thermodynamic length, speed, and process time. These quantities are instrumental in establishing bounds on dissipation. The findings not only enhance our comprehension of the thermodynamic complexities associated with the WAdS \(_3\) black hole but also offer valuable perspectives on optimizing processes within a framework applicable to any system operating at finite temperature.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Thermodynamic Length and Optimal Processes in Holographic Models

  • V. Avramov,
  • H. Dimov,
  • M. Radomirov,
  • R. C. Rashkov,
  • T. Vetsov

摘要

In this paper we conduct a detailed study of optimal processes applied to the WAdS \(_3\) black hole solution within the context of thermodynamic information geometry. Employing standard thermodynamic metrics, we calculate essential parameters, including thermodynamic length, speed, and process time. These quantities are instrumental in establishing bounds on dissipation. The findings not only enhance our comprehension of the thermodynamic complexities associated with the WAdS \(_3\) black hole but also offer valuable perspectives on optimizing processes within a framework applicable to any system operating at finite temperature.