Exact Density Profiles of 1D Quantum Fluids in the Thomas-Fermi Limit: Geometric Hierarchy to the Tonks-Girardeau Gas
arXiv:2603.01273
Abstract
We present a geometric framework for 1D quantum fluids across interaction regimes in the Thomas-Fermi limit. Based on the Linearization Principle via the -logarithm, macroscopic density profiles form a discrete hierarchy: the ideal Bose gas (), the mean-field Gross-Pitaevskii condensate (), and the strongly correlated Tonks-Girardeau gas (). We further derive a universal sound velocity scaling, , valid in the interacting regimes (). This establishes a non-perturbative link between static geometry and dynamical excitations in many-body systems.
4 pages, 1 figure. Submitted for publication. Minor revisions including clarification on the non-interacting limit