arXiv · 2507.01102
Average-field approximation for dilute almost-bosonic anyons
Abstract
We study the ground state of a system of $N$ two-dimensional trapped almost-bosonic anyons. This setup can equivalently be viewed as bosons interacting through long-range magnetic potentials generated by magnetic charges carried by each particle. These magnetic charges are assumed to be smeared over discs of radius $R$$\unicode{x2013}$a model known as extended anyons. To recover the point-like anyons perspective, we consider the joint limit $R \rightarrow 0$ as $N \rightarrow \infty$. We rigorously justify the average-field approximation for any radius $R$ that decays polynomially, and even for certain exponentially decaying $R$. The average-field approximation asserts that the particles behave like independent, identical bosons interacting through a self-consistent magnetic field. Our result significantly improves upon the best-known estimates by Lundholm-Rougerie (2015) and Girardot (2020), and it in particular covers radii that are much smaller than the mean interparticle distance. The proof strategy builds on recent work on two-dimensional attractive Bose gases by Junge and the author (2025).
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
François Louis Antoine Visconti. 2025-07-01. Average-field approximation for dilute almost-bosonic anyons. https://arxiv.org/abs/2507.01102
Cite the original work for its findings. Save a collection to share your selection of sources.