Density of states of a 2D system of soft-sphere fermions by path integral Monte Carlo simulations
DOI10.1088/1751-8121/ace867zbMath1530.81164arXiv2305.07601OpenAlexW4384698913MaRDI QIDQ6168156
A. S. Larkin, V. S. Filinov, P. R. Levashov
Publication date: 8 August 2023
Published in: Journal of Physics A: Mathematical and Theoretical (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2305.07601
Density estimation (62G07) Monte Carlo methods (65C05) Spectrum, resolvent (47A10) Path integrals in quantum mechanics (81S40) Phase-space methods including Wigner distributions, etc. applied to problems in quantum mechanics (81S30) Fermionic systems in quantum theory (81V74)
Cites Work
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- The uniform electron gas at warm dense matter conditions
- Entropic sampling in the path integral Monte Carlo method
- Peculiarities of the momentum distribution functions of strongly correlated charged fermions
- On the Interaction of Electrons in Metals
- Monte Carlo simulations of the electron short-range quantum ordering in Coulomb systems and the ‘fermionic sign problem’
- Numerical Methods for Electronic Structure Calculations of Materials
- Quantum Statistics of Dense Gases and Nonideal Plasmas
- The method of effective potentials in the quantum-statistical theory of plasmas
- Statistical Mechanics of Fluid Mixtures
- A portable and flexible implementation of the Wang-Landau algorithm in order to determine the density of states
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