Non-equilibrium Statistical Approach to Friction Models
arXiv:1404.6627
Abstract
A geometric approach to the friction phenomena is presented. It is based on the holographic view which has recently been popular in the theoretical physics community. We see the system in one-dimension-higher space. The heat-producing phenomena are most widely treated by using the non-equilibrium statistical physics. We take 2 models of the earthquake. The dissipative systems are here formulated from the geometric standpoint. The statistical fluctuation is taken into account by using the (generalized) Feynman's path-integral.
6 pages, 7 figures
References in corpus (4)
- Velocity-Field Theory, Boltzmann's Transport Equation, Geometry and Emergent Time
- Renormalization Group Approach to Casimir Effect and the Attractive and Repulsive Forces in Substance
- Velocity-Field Theory, Boltzmann's Transport Equation and Geometry
- Renormalization Group Approach to Dissipative System