$2$-R\'enyi CCNR Negativity of Compact Boson for multiple disjoint intervals
Abstract
We investigate mixed-state bipartite entanglement between multiple disjoint intervals using the computable cross-norm criterion (CCNR). We consider entanglement between a single interval and the union of remaining disjoint intervals, and compute -R\'enyi CCNR negativity for d massless compact boson. The expression for -R\'enyi CCNR negativity is given in terms of cross-ratios and Riemann period matrices of Riemann surfaces involved in the calculation. In general, the Riemann surfaces involved in the calculation of -R\'enyi CCNR negativity do not possess a symmetry. We also evaluate the Reflected R\'enyi entropy related to the -R\'enyi CCNR negativity. This Reflected R\'enyi entropy is a universal quantity. We extend these calculations to the d massless Dirac fermions as well. Finally, the analytical results are checked against the numerical evaluations in the tight-binding model and are found to be in good agreement.
Cite
@article{arxiv.2411.07698,
title = {$2$-R\'enyi CCNR Negativity of Compact Boson for multiple disjoint intervals},
author = {Himanshu Gaur},
journal= {arXiv preprint arXiv:2411.07698},
year = {2025}
}
Comments
V2: 30 pages, 11 figures, improved presentation and new references added