1 citations · 2 across the 7 of their papers we have counts for
7 papers
The principle of microreversibility and the fluctuation relations for quantum systems driven out of equilibrium
Hiroshi Matsuoka
For classical systems driven out of equilibrium, Crooks derived a relation (the Crooks-Jarzynski relation), whose special cases include a relation (the Crooks relation) equivalent…
Generalized entropy and extensions of the second law of thermodynamics and the Clausius relation for quantum systems in steady heat conduction states
Hiroshi Matsuoka
This paper has been withdrawn by the author. For the reason, see the bottom paragraph of this abstract. By generalizing Tasaki's work on the second law of thermodynamics for an adi…
Green-Kubo formulas with symmetrized correlation functions for quantum systems in steady states: the shear viscosity of a fluid in a steady shear flow
Hiroshi Matsuoka
For a quantum system in a steady state with a constant current of heat or particles driven by a temperature or chemical potential difference between two reservoirs attached to the…
A macroscopic model that connects the molar excess entropy of a deeply supercooled liquid near its glass transition temperature to its viscosity
Hiroshi Matsuoka
For a deeply supercooled liquid near its glass transition temperature, we suggest a possible way to connect the temperature dependence of its molar excess entropy to that of its vi…
Chromo-field flux sheets as confining gauge field configurations in the SU(N) Euclidean Yang-Mills theory in the Landau gauge
Hiroshi Matsuoka
For the four-dimensional SU(N) Euclidean Yang-Mills theory in the Landau gauge, we present two sets of gauge field configurations that satisfy the Euclidean equations of motion. Th…
Thermodynamic model for the glass transition: deeply supercooled liquids as mixtures of solid-like and liquid-like micro-regions
Hiroshi Matsuoka
For a deeply supercooled liquid just above its glass transition temperature, we present a simple thermodynamic model, where the deeply supercooled liquid is assumed to be a mixture…