One-component fermion plasma on a sphere at finite temperature. The anisotropy in the paths conformations
arXiv:2303.11988 · doi:10.1088/1742-5468/aceb54
Abstract
In our previous work [R. Fantoni, Int. J. Mod. Phys. C, {\bf 29}, 1850064 (2018)] we studied, through a computer experiment, a one-component fermion plasma on a sphere at finite, non-zero, temperature. We extracted thermodynamic properties like the kinetic and internal energy per particle and structural properties like the radial distribution function, and produced some snapshots of the paths to study their shapes. Here we revisit such a study giving some more theoretical details explaining the paths shape anisotropic conformation due to the inhomogeneity in the polar angle of the variance of the random walk diffusion from the kinetic action.
15 pages, 3 figures. arXiv admin note: substantial text overlap with arXiv:1806.02153
References in corpus (8)
- Path Integral Monte Carlo Simulation of the Warm-Dense Homogeneous Electron Gas
- {\em Ab initio} Quantum Monte Carlo simulation of the warm dense electron gas in the thermodynamic limit
- Fermionic path integral Monte Carlo results for the uniform electron gas at finite temperature
- Two-dimensional one-component plasma on a Flamm's paraboloid
- The structure of colloidosomes with tunable particle density: simulation vs experiment
- Two Component Plasma in a Flamm's Paraboloid
- The density of a fluid on a curved surface
- The moment sum-rules for ionic liquids at criticality