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- W2092249528 abstract "Thermodynamic properties of two-dimensional electron liquids are determined by numerical experiments over the domain of the plasma parameter $ensuremath{epsilon}=frac{2ensuremath{pi}n{e}^{4}}{{T}^{2}}$, $0.05ensuremath{le}ensuremath{epsilon}ensuremath{le}5ifmmodetimeselsetexttimesfi{}{10}^{3}$, where $n$, $e$, and $T$ denote the number density, the unit charge, and the temperature in energy units, respectively. The correlation energy thus obtained is consistent with both the result of the plasma-parameter expansion calculation and that of earlier numerical experiments in the high-density domain. The pair correlation function $g(r)$ agrees with the analytical result when $ensuremath{epsilon}$ is small. Short-range order appears at the critical plasma parameter ${ensuremath{epsilon}}_{mathrm{sr}}$ in the range $10<{ensuremath{epsilon}}_{mathrm{sr}}<15$. It is pointed out that the two-dimensional screening function $h(r)=mathrm{ln}[g(r)+1]+frac{{e}^{2}}{mathrm{Tr}}$ is approximately a linear function of the radius $r$ in the short-range domain, as in the case of three dimensions." @default.
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- W2092249528 date "1978-01-01" @default.
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- W2092249528 title "Numerical experiment on two-dimensional electron liquids. Thermodynamic properties and onset of short-range order" @default.
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- W2092249528 doi "https://doi.org/10.1103/physreva.17.399" @default.
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