TY - JOUR
T1 - Composite dynamics in Sp(2N) gauge theories
AU - Lee, Jong Wan
AU - Bennett, Ed
AU - Hong, Deog Ki
AU - Hsiao, Ho
AU - Lin, C. J.David
AU - Lucini, Biagio
AU - Piai, Maurizio
AU - Vadacchino, Davide
PY - 2022
Y1 - 2022
N2 - Sp(2N) gauge theories with fermonic matter provide an ideal laboratory to build extensions of the standard model based on novel composite dynamics. Examples include composite Higgs along with top partial compositeness and composite dark matter. Without fermions, their study also complements 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, extrapolate the results to the large N limit, and discuss certain universal properties in Yang-Mills theories.
AB - Sp(2N) gauge theories with fermonic matter provide an ideal laboratory to build extensions of the standard model based on novel composite dynamics. Examples include composite Higgs along with top partial compositeness and composite dark matter. Without fermions, their study also complements 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, extrapolate the results to the large N limit, and discuss certain universal properties in Yang-Mills theories.
UR - https://pearl.plymouth.ac.uk/context/secam-research/article/1567/viewcontent/epjconf_confxv2022_08005.pdf
U2 - 10.1051/epjconf/202227408005
DO - 10.1051/epjconf/202227408005
M3 - Article
SN - 2100-014X
VL - 274
JO - EPJ Web of Conferences
JF - EPJ Web of Conferences
IS - 0
ER -