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Publication Information
Title Nonperturbative phase diagram of two-dimensional N = (2, 2) super-Yang-Mills theory
Abstract We non-perturbatively study two-dimensional SU(N) supersymmetric Yang-Mills theory with four supercharges and large 12 <= N <= 20. Although this theory has no known holographic dual, we conduct numerical investigations to check for features similar to the sixteen-supercharge theory, which has a well-defined gravity dual. We carry out lattice field theory calculations to determine the phase diagram, observing a spatial deconfinement transition, similar to the maximally supersymmetric case. However, the transition does not continue to strong couplings, implying the absence of a holographic interpretation for this four-supercharge theory.
Author(s) Raghav Jha, Navdeep Singh Dhindsa, David Schaich, Anosh Joseph
Publication Date September 2024
Document Type Journal Article
Primary Institution Thomas Jefferson National Accelerator Facility, Newport News
Affiliation Theory & Comp Physics / THEORY CENTER / THEORY CENTER
Funding Source Nuclear Physics (NP)
Proprietary? No
This publication conveys Technical Science Results
Document Numbers
JLAB Number: JLAB-THY-24-4032 OSTI Number: 2441189
LANL Number: arXiv:2312.04980 Other Number: DOE/OR/23177-7462
Associated with an experiment No
Associated with EIC No
Supported by Jefferson Lab LDRD Funding No
Journal Article
Journal Name Physical Review D
Refereed Yes
Volume 110
Issue
Page(s) 0054507
Attachments/Datasets/DOI Link
Document(s)
PhysRevD.110.054507.pdf (STI Document)
PhysRevD.110.054507.pdf (Accepted Manuscript)
DOI Link
Dataset(s) (none)
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