2024 : 5 : 3
Mohamad Reza Setare

Mohamad Reza Setare

Academic rank: Professor
ORCID:
Education: PhD.
ScopusId: 7003669033
Faculty: Faculty of Science
Address:
Phone: 08716660075

Research

Title
Holographic entanglement entropy in flat limit of the generalized minimal massive gravity model
Type
JournalPaper
Keywords
entropy,minimal massive gravity model
Year
2021
Journal EUROPEAN PHYSICAL JOURNAL C
DOI
Researchers Mohamad Reza Setare ، Meysam Koohgard

Abstract

reviously we have studied the Generalized Min- imal Massive Gravity (GMMG) in asymptotically AdS3 background, and have shown that the theory is free of negative-energy bulk modes. Also we have shown GMMG avoids the aforementioned “bulk-boundary unitarity clash”. Here instead of AdS3 space we consider asymptotically flat space, and study this model in the flat limit. The dual field theory of GMMG in the flat limit is a BMS3 invariant field theory, dubbed (BMSFT) and we have BMS algebra asymp- totically instead of Virasoro algebra. In fact here we present an evidence for this claim. Entanglement entropy of GMMG is calculated in the background in the flat null infinity. Our evidence for mentioned claim is the result for entanglement entropy in filed theory side and in the bulk (in the gravity side). At first using Cardy formula and Rindler transforma- tion, we calculate entanglement entropy of BMSFT in three different cases. Zero temperature on the plane and on the cylinder, and non-zero temperature case. Then we obtain the entanglement entropy in the bulk. Our results in gravity side are exactly in agreement with field theory calculations.