Quantum Statistical Mechanics for Nonextensive Systems II
arXiv:cond-mat/9904100 · doi:10.1103/PhysRevE.59.1398
Abstract
In this paper, the Green function theory of quantum many-particle systems recently presented is reworked within the framework of nonextensive statistical mechanics with a new normalized -expectation values. This reformulation introduces a renormalization of temperature of the earlier theory and a self-consistency condition. The linear response theory is also presented, along with its two-particle Green function version. Finally, a Boltzmann transport-like equation is also developed here.
RevTeX 16 pages
Cited by in corpus (15)
- What should a statistical mechanics satisfy to reflect nature?
- Implications of Form Invariance to the Structure of Nonextensive Entropies
- Evidences for Tsallis non-extensivity on CMR manganites
- Average Entropy of a Subsystem from its Average Tsallis Entropy
- Hadron transverse momentum distributions of the Tsallis normalized and unnormalized statistics
- Remarks on expansion and factorization approximation in the Tsallis nonextensive statistical mechanics
- -deformed Einstein's Model to Describe Specific Heat of Solid
- Bose-Einstein condensation and non-extensive statistics
- Path Integral Approach to the Nonextensive Canonical Density Matrix
- The nonextensive statistical ensembles with dual thermodynamic interpretations
- The interpolation approach to nonextensive quantum systems
- Quantum group invariant, nonextensive quantum statistical mechanics
- Nonextensive quantum method for itinerant-electron ferromagnetism: Fractorization approach
- Two-time Green's functions and spectral density method in nonextensive quantum statistical mechanics
- Thermodynamic properties of the solid and metal electrons in the nonextensive quantum statistics with a nonextensive parameter transformation