One-component fermion plasma on a sphere at finite temperature
arXiv:1806.02153 · doi:10.1142/S012918311850064X
Abstract
We study through a computer experiment, using the restricted path integral Monte Carlo method, a one-component fermion plasma on a sphere at finite, non-zero, temperature. We extract thermodynamic properties like the kinetic and internal energy per particle and structural properties like the radial distribution function. This study could be relevant for the characterization and better understanding of the electronic properties of hollow graphene spheres.
8 pages, 3 figures, and 1 table
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Cited by in corpus (7)
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- One-component fermion plasma on a sphere at finite temperature. The anisotropy in the paths conformations
- Thermodynamic limit of the free electron gas on a circle
- Coherent State Path Integral Monte Carlo
- Static screening in a degenerate electron plasma
- Sum Rules in Quantum Liquids