Target space entanglement in quantum mechanics of fermions and matrices
High Energy Physics - Theory
2021-08-20 v2 Quantum Gases
Statistical Mechanics
Quantum Physics
Abstract
We consider entanglement of first-quantized identical particles by adopting an algebraic approach. In particular, we investigate fermions whose wave functions are given by the Slater determinants, as for singlet sectors of one-matrix models. We show that the upper bounds of the general R\'enyi entropies are for particles or an matrix. We compute the target space entanglement entropy and the mutual information in a free one-matrix model. We confirm the area law: the single-interval entropy for the ground state scales as in the large model. We obtain an analytical expression of the mutual information for two intervals in the large expansion.
Keywords
Cite
@article{arxiv.2105.13726,
title = {Target space entanglement in quantum mechanics of fermions and matrices},
author = {Sotaro Sugishita},
journal= {arXiv preprint arXiv:2105.13726},
year = {2021}
}
Comments
28 pages + appendices, 4 figures; v2: typos corrected