Wei Bo-Bo, Jiang Zhan-Feng, Liu Ren-Bao
Department of Physics and Centre for Quantum Coherence, The Chinese University of Hong Kong, Hong Kong, China.
Institute of Theoretical Physics, The Chinese University of Hong Kong, Hong Kong, China.
Sci Rep. 2015 Oct 19;5:15077. doi: 10.1038/srep15077.
The holographic principle states that the information about a volume of a system is encoded on the boundary surface of the volume. Holography appears in many branches of physics, such as optics, electromagnetism, many-body physics, quantum gravity, and string theory. Here we show that holography is also an underlying principle in thermodynamics, a most important foundation of physics. The thermodynamics of a system is fully determined by its partition function. We prove that the partition function of a finite but arbitrarily large system is an analytic function on the complex plane of physical parameters, and therefore the partition function in a region on the complex plane is uniquely determined by its values along the boundary. The thermodynamic holography has applications in studying thermodynamics of nano-scale systems (such as molecule engines, nano-generators and macromolecules) and provides a new approach to many-body physics.
全息原理指出,关于一个系统体积的信息被编码在该体积的边界表面上。全息术出现在物理学的许多分支中,如光学、电磁学、多体物理学、量子引力和弦理论。在这里我们表明,全息术也是热力学中的一个基本原理,而热力学是物理学最重要的基础之一。一个系统的热力学完全由其配分函数决定。我们证明,一个有限但任意大的系统的配分函数是物理参数复平面上的解析函数,因此复平面上一个区域内的配分函数由其沿边界的值唯一确定。热力学全息术在研究纳米尺度系统(如分子发动机、纳米发电机和大分子)的热力学方面有应用,并为多体物理学提供了一种新方法。