No Cover Image

Journal article 23708 views 49 downloads

Composite dynamics in Sp(2N) gauge theories

Jong-Wan Lee, Ed Bennett Orcid Logo, Deog Ki Hong, Ho Hsiao, C.-J. David Lin, Biagio Lucini Orcid Logo, Maurizio Piai Orcid Logo, Davide Vadacchino

EPJ Web of Conferences, Volume: 274, Start page: 08005

Swansea University Authors: Ed Bennett Orcid Logo, Biagio Lucini Orcid Logo, Maurizio Piai Orcid Logo

  • 62100.pdf

    PDF | Version of Record

    This is an Open Access article distributed under the terms of the Creative Commons Attribution License 4.0

    Download (1.87MB)

Abstract

Sp(2N) gauge theories with fermonic matter provide an ideal lab- oratory to build extensions of the standard model based on novel composite dynamics. Examples include composite Higgs along with top partial compos- iteness and composite dark matter. Without fermions, their study also comple- ments th...

Full description

Published in: EPJ Web of Conferences
ISSN: 2100-014X
Published: EDP Sciences 2022
Online Access: Check full text

URI: https://cronfa.swan.ac.uk/Record/cronfa62100
Tags: Add Tag
No Tags, Be the first to tag this record!
Abstract: Sp(2N) gauge theories with fermonic matter provide an ideal lab- oratory to build extensions of the standard model based on novel composite dynamics. Examples include composite Higgs along with top partial compos- iteness and composite dark matter. Without fermions, their study also comple- ments those based on SU(Nc) gauge theories with which they share a common sector in the large Nc = 2N limit. We report on our recent progress in the numerical studies of Sp(2N) gauge theories discretised on a four-dimensional Euclidean lattice. In particular, we present preliminary results for the low-lying mass spectra of mesons and chimera baryons in the theories with N = 2. We also compute the topological susceptibility for various values of N, extrapo- late the results to the large N limit, and discuss certain universal properties in Yang-Mills theories.
College: Faculty of Science and Engineering
Start Page: 08005