arXiv · 2203.17183
Ground state energy of dilute Bose gases in 1D
Abstract
We study the ground state energy of a gas of 1D bosons with density $ρ$, interacting through a general, repulsive 2-body potential with scattering length $a$, in the dilute limit $ρ|a|\ll1$. The first terms in the expansion of the thermodynamic energy density are $π^2ρ^3/3(1+2ρa)$, where the leading order is the 1D free Fermi gas. This result covers the Tonks-Girardeau limit of the Lieb-Liniger model as a special case, but given the possibility that $a>0$, it also applies to potentials that differ significantly from a delta function. We include extensions to spinless fermions and 1D anyonic symmetries, and discuss an application to confined 3D gases.
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Johannes Agerskov, Robin Reuvers, Jan Philip Solovej. 2024-11-07. Ground state energy of dilute Bose gases in 1D. https://arxiv.org/abs/2203.17183
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