Five-Loop Critical Temperature Shift in Weakly Interacting Homogeneous Bose-Einstein Condensate
arXiv:cond-mat/0210162 · doi:10.1142/S0217984903006074
Abstract
Using variational perturbation theory, we calculate the shift in the critical temperature T_c up to five loops to lowest order in the scattering length a and find Delta T_c/T_c^{(0)} approx (1.14\pm0.11)an^{1/3}, where n is the particle density. Our result is lower than the latest Monte Carlo result (1.32\pm0.02)an^{1/3}.
Author Information under http://www.physik.fu-berlin.de/~kleinert/institution.html . Latest update of paper (including all PS fonts) at http://www.physik.fu-berlin.de/~kleinert/320
Cited by in corpus (38)
- Theory of the Weakly Interacting Bose Gas
- Principal problems in Bose-Einstein condensation of dilute gases
- Bose-Einstein Condensation Temperature of Homogenous Weakly Interacting Bose Gas in Variational Perturbation Theory Through Seven Loops
- Effects of Interactions on the Critical Temperature of a Trapped Bose Gas
- Self-energy and critical temperature of weakly interacting bosons
- α_S from and Renormalization Group Optimized Perturbation
- The chiral condensate from renormalization group optimized perturbation
- Reentrant Phenomenon in Quantum Phase Diagram of Optical Boson Lattice
- Critical behavior of weakly interacting bosons: A functional renormalization group approach
- Lambda^{QCD}_{MS} from Renormalization Group Optimized Perturbation
- Sub-nK thermometry of an interacting -dimensional homogeneous Bose gas
- Condensed Fraction of an Atomic Bose Gas Induced by Critical Correlations
- Renormalization Group Improved Optimized Perturbation Theory: Revisiting the Mass Gap of the O(2N) Gross-Neveu Model
- Rigorous Upper Bound on the Critical Temperature of Dilute Bose Gases
- Dynamical Generation of a Repulsive Vector Contribution to the Quark Pressure
- Conserving Gapless Mean-Field Theory for Weakly Interacting Bose Gases
- Renormalization Group Optimized Perturbation Theory at Finite Temperatures
- Scale Invariant Resummed Perturbation at Finite Temperatures
- Phase diagram of the magnetized planar Gross-Neveu model beyond the large-N approximation
- Exact 1/N and Optimized Perturbative Evaluation of mu_c for Homogeneous Interacting Bose Gases
- Dependence of Variational Perturbation Expansions on Strong-Coupling Behavior. Inapplicability of delta-Expansion to Field Theory
- Condensation temperature of interacting Bose gases with and without disorder
- Comparative studies of many-body corrections to an interacting Bose condensate
- Disorder-Induced Shift of Condensation Temperature for Dilute Trapped Bose Gases
- Nonperturbative Effects on T_c of Interacting Bose Gases in Power-Law Traps
- Stoner ferromagnetism in a thermal pseudospin-1/2 Bose gas
- QCD pressure: renormalization group optimized perturbation theory confronts lattice
- Quantum Phase Diagram for Homogeneous Bose-Einstein Condensate
- Analytical limits for cold atom Bose gases with tunable interactions
- Chiral Condensate and Spectral Density at full five-loop and partial six-loop orders of Renormalization Group Optimized Perturbation
- Asymptotically Free Theory with Scale Invariant Thermodynamics
- Phase diagram for interacting Bose gases
- Renormalization group improved pressure for hot and dense quark matter
- Phase Transitions in Three-Dimensional Bosonic Systems in Optical Lattices
- Condensate and superfluid fraction of homogeneous Bose gases in a self-consistent Popov approximation
- Studying Superfluid Transition of a Dilute Bose Gas by Conserving Approximations
- -expansion for the critical temperature of the Bose gas
- Effective Action and Field Equation for BEC from Weak to Strong Couplings