返回
摘要
En 中文
Using quantum information geometry, I derive quantum generalizations of the Onsager rate equations, which model the dynamics of an open system near a steady state. The generalized equations hold for a flexible definition of the forces as well as a large class of statistical divergence measures and quantum-Fisher-information metrics beyond the conventional definition of entropy production. I also derive quantum Onsager-Casimir relations for the transport tensors by proposing a general concept of time reversal and detailed balance for open quantum systems. The results establish a remarkable connection between statistical mechanics and parameter estimation theory.
Keyword:
quantum statistical mechanics
information geometry
Onsager relations
quantum metrology
Fisher information
期刊
IF:
5
论文数:
1.4K
被引数:
5.1K
机构
引用论文
Achieving the Heisenberg limit in quantum metrology using quantum error correction
NATURE COMMUNICATIONS
IF15.7

