activity
20002004
most citedAction principle and Jaynes' guess method

4 citations · 10 across the 6 of their papers we have counts for

collaborators

7 papers

cond-mat.stat-mech20041 cited

Fourier's law and maximum path information

Q. A. Wang

By using a path information defined for the measure of the uncertainty of instable dynamics, a theoretical derivation of Fourier's law of heat conduction is given on the basis of m…

cond-mat.stat-mech20044 cited

Action principle and Jaynes' guess method

Q. A. Wang

A path information is defined in connection with the probability distribution of paths of nonequilibrium hamiltonian systems moving in phase space from an initial cell to different…

cond-mat.stat-mech20033 cited

How to proceed with nonextensive systems at equilibrium?

Q. A. Wang, L. Nivanen, M. Pezeril +1

In this paper, we show that 1) additive energy is not appropriate for discussing the validity of Tsallis or Rényi statistics for nonextensive systems at meta-equilibrium; 2) -bo…

cond-mat.stat-mech2003

Applying incomplete statistics to nonextensive systems with different indices

L. Nivanen, M. Pezeril, Q. A. Wang +1

The nonextensive statistics based on the -entropy has been so far applied to systems in which the value is uniformly distributed.…

cond-mat.stat-mech20032 cited

Comment on ``Nonextensive hamiltonian systems follow Boltzmann's principle not Tsallis statistics-phase transition, second law of thermodynamics'' by Gross

Q. A. Wang

Recently, Gross claims that Boltzmann entropy is valid for any system at equilibrium, so that Tsallis entropy is useless in this case. I comment on some arguments forwar…

cond-mat.stat-mech2002

On the energy translation invariance of probability distributions

Q. A. Wang, L. Nivanen, M. Pezeril +1

We comment on the problem of energy translation invariance of probability distribution and present some observations. It is shown that a probability distribution can be invariant i…