Non-equilibrium statistical mechanics
Prof. Oren Raz
Research
The group studies the statistical mechanics of systems pushed away from thermal equilibrium, where the familiar guarantees of equilibrium thermodynamics no longer hold. A central thread is the dynamics of relaxation: how a system in contact with a thermal bath approaches its steady state, and why that approach can be sharply counterintuitive. The anomalous, or Mpemba, effect — in which a hotter system can cool faster than a colder one, and its heating-side analogues — serves as a concrete probe for the structure of relaxation in Markovian and stochastic thermodynamic models.
A second focus is periodically driven systems, where external time-dependent forcing competes with relaxation toward a bath. The group asks when such driving produces a genuine non-equilibrium steady state, how that state differs from an equilibrium one, and what general bounds constrain the work, dissipation, and response. This work connects to broader questions in stochastic thermodynamics — fluctuation relations, thermodynamic inequalities, and the cost of control — and matters because most physical, chemical, and biological processes operate out of equilibrium, where a predictive theory is still being assembled.
Group members
- Dr. Noam Brown
- Shahaf Aharony Shapira
- Itamar Ben Arosh Arad
- Omer Chor
- Jonah Sobel
- Naomi Vansover-Hager
- Doron Benyamin
- Itai Madar
8 people are listed with this group, besides the principal investigator. Names and categories are as published in the Weizmann directory and on the group's own page; rooms, phone numbers and e-mail addresses are on the People page.