Large-scale simulations of particle-hole-symmetric Pfaffian trial wavefunctions
Abstract
We introduce a family of paired-composite-fermion trial wave functions for any odd Cooper-pair angular momentum. These wave functions are parameter-free and can be efficiently projected into the lowest Landau level. We use large-scale Monte Carlo simulations to study three cases: Firstly, the Moore-Read phase, which serves us as a benchmark. Secondly, we explore the pairing associated with the anti-Pfaffian and the particle-hole-symmetric Pfaffian. Specifically, we assess whether their trial states feature exponentially decaying correlations and thus represent gapped phases of matter. For Moore-Read and anti-Pfaffian we find decay lengths of and , in units of the magnetic length. By contrast, for the case of PH-Pfaffian, we find no evidence of a finite length scale for up to particles.
Keywords
Cite
@article{arxiv.2008.01087,
title = {Large-scale simulations of particle-hole-symmetric Pfaffian trial wavefunctions},
author = {Mykhailo Yutushui and David F. Mross},
journal= {arXiv preprint arXiv:2008.01087},
year = {2020}
}
Comments
13 pages, 9 figures, published version