A new form of Tsallis distribution based on the probabilistically independent postulate
arXiv:0906.1409 · doi:10.1088/1674-1056/19/7/070501
Abstract
The current form of Tsallis distribution for a Hamiltonian system with an arbitrary potential is found to represent a simple isothermal situation. In this letter, the q-exponential of a sum can be applied as the product of the q-exponential based on the probabilistically independent postulate employed in nonextensive statistical mechanics. Under this framework, a new form of Tsallis distribution is suggested. It is shown that the new form of Tsallis distribution can supply the statistical description for the nonequilibrium dynamical property of the Hamiltonian system governed by an arbitrary potential, and it is found to be one potential statistical distribution for the dark matter.
11 pages
References in corpus (7)
- Nonlinear mean field Fokker-Planck equations. Application to the chemotaxis of biological populations
- A nonextensive approach for the instability of current-driven ion-acoustic waves in space plasma
- Simulated Dark-Matter Halos as a Test of Nonextensive Statistical Mechanics
- Dust-acoustic instability driven by drifting ions and electrons in the dust plasma with Lorentzian kappa distribution
- Nonextensive effects on the relativistic nuclear equation of state
- Possible dynamics of the Tsallis distribution from a Fokker-Planck equation (I)
- Heat capacity of the generalized two-atom and many-atom gas in nonextensive statistics
Cited by in corpus (12)
- Transition state theory: a generalization to nonequilibrium systems with power-law distributions
- Dust charging processes in the nonequilibrium dusty plasma with nonextensive power-law distribution
- Non-extensive Statistics and Understanding Particle Production and Kinetic Freeze-out Process from -spectra at 2.76 TeV
- The power-law reaction rate coefficient for an elementary bimolecular reaction
- Power-law distributions and fluctuation-dissipation relation in the stochastic dynamics of two-variable Langevin equations
- The collision theory reaction rate coefficient for power-law distributions
- Secondary electron emissions and dust charging currents in the nonequilibrium dusty plasma with power-law distributions
- Thermodynamic potentials and Thermodynamic Relations in Nonextensive Thermodynamics
- Small amplitude ion-acoustic solitary waves in a four-component magneto-rotating plasma with a modified Cairns-Tsallis distribution
- The entropy in finite -unit nonextensive systems: the ordinary average and -average
- The power-law reaction rate coefficient for barrierless reactions
- Non-extensive Statistics and a Systematic Study of Meson-Spectra at LHC Energy TeV