Entropy production in thermostats II
Nurlan S. Dairbekov, Gabriel P. Paternain
Abstract
We show that an arbitrary Anosov Gaussian thermostat close to equilibrium has positive entropy poduction unless the external field E has a global potential. The configuration space is allowed to have any dimension and magnetic forces are also allowed. We also show the following non-perturbative result. Suppose a Gaussian thermostat satisfies \[Kw(σ)+1/4|Eσ|2<0\] for every 2-plane σ, where Kw is the sectional curvature of the associated Weyl connection and Eσ is the orthogonal projection of E onto σ. Then the entropy production of any SRB measure is positive unless E has a global potential. A related non-perturbative result is also obtained for certain generalized thermostats on surfaces.
Create a lesson
Related papers
At most exponential growth of periodic orbits for star flows
C. A. Morales, E. Rego, X. Wen
Interconnection of port-Hamiltonian systems is not dynamical
Jonas Kirchhoff
First integrals of dense hard-ball gases
Gleb Smirnov
Existence and Stability of Dancing Equilibria in Asymmetric Kuramoto Networks
Wen Sun, Yu-Qing Wang, Jiu-Gang Dong
Poisson actions of noncompact locally compact sofic groups have completely positive entropy
Zhuowei Liu
Ergodic × p-invariant measures on T2 with no dimension dropping projections
Amir Algom