Based on a diffusion-like master equation we propose a formula using the Bregman divergence for measuring entropic distance in terms of different non-extensive entropy expressions. We obtain the non-extensivity parameter range for a universal approach to the stationary distribution by simple diffusive dynamics for the Tsallis and the Kaniadakis entropies, for the Hanel–Thurner generalization, and finally for a recently suggested log-log type entropy formula which belongs to diverging variance in the inverse temperature superstatistics
In the field of non-extensive statistical mechanics it is common to focus more attention on the fami...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
The paper is devoted to metrization of probability spaces through the introduction of a quadratic di...
Based on a diffusion-like master equation we propose a formula using the Bregman divergence for meas...
More and more works deal with statistical systems far from equilibrium, dominated by unidirectional ...
We provide a unifying axiomatics for R,enyi’s entropy and non-extensive entropy of Tsallis. It is sh...
International audienceThe dissipation of general convex entropies for continuous time Markov process...
We analyze Furth's 1933 classical uncertainty relations in the modern language of stochastic differe...
In information theory the 4 Shannon-Khinchin (SK) axioms determine Boltzmann Gibbs entropy, S ~ -Sig...
Entropy appears in many contexts (thermodynamics, statistical mechanics, information theory, measure...
This article provides a completion to theories of information based on entropy, resolving a longstan...
Diffusion-a measure of dynamics, and entropy-a measure of disorder in the system are found to be int...
This paper presents a nonequilibrium thermodynamic model for the relaxation of a local, isolated sys...
What is the best description that we can construct of a thermodynamic system that is not in equilib...
One of the most fundamental laws of Nature is formulated by the Second Law of Thermodynamics. At pre...
In the field of non-extensive statistical mechanics it is common to focus more attention on the fami...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
The paper is devoted to metrization of probability spaces through the introduction of a quadratic di...
Based on a diffusion-like master equation we propose a formula using the Bregman divergence for meas...
More and more works deal with statistical systems far from equilibrium, dominated by unidirectional ...
We provide a unifying axiomatics for R,enyi’s entropy and non-extensive entropy of Tsallis. It is sh...
International audienceThe dissipation of general convex entropies for continuous time Markov process...
We analyze Furth's 1933 classical uncertainty relations in the modern language of stochastic differe...
In information theory the 4 Shannon-Khinchin (SK) axioms determine Boltzmann Gibbs entropy, S ~ -Sig...
Entropy appears in many contexts (thermodynamics, statistical mechanics, information theory, measure...
This article provides a completion to theories of information based on entropy, resolving a longstan...
Diffusion-a measure of dynamics, and entropy-a measure of disorder in the system are found to be int...
This paper presents a nonequilibrium thermodynamic model for the relaxation of a local, isolated sys...
What is the best description that we can construct of a thermodynamic system that is not in equilib...
One of the most fundamental laws of Nature is formulated by the Second Law of Thermodynamics. At pre...
In the field of non-extensive statistical mechanics it is common to focus more attention on the fami...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
The paper is devoted to metrization of probability spaces through the introduction of a quadratic di...