Exact results in 3d N = 2 Spin(7) gauge theories with vector and spinor matters
A bstract We study three-dimensional N = 2 Spin(7) gauge theories with N S spinorial matters and with N f vectorial matters. The quantum Coulomb branch on the moduli space of vacua is one- or two-dimensional depending on the matter contents. For particular values of ( N f , N S ), we find s-confinem...
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Veröffentlicht in: | The journal of high energy physics 2018-05, Vol.2018 (5), p.1-30 |
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Sprache: | eng |
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Zusammenfassung: | A
bstract
We study three-dimensional
N
= 2 Spin(7) gauge theories with
N
S
spinorial matters and with
N
f
vectorial matters. The quantum Coulomb branch on the moduli space of vacua is one- or two-dimensional depending on the matter contents. For particular values of (
N
f
, N
S
), we find s-confinement phases and derive exact superpotentials. The 3d dynamics of Spin(7) is connected to the 4d dynamics via KK-monopoles. Along the Higgs branch of the Spin(7) theories, we obtain 3d
N
= 2
G
2
or SU(4) theories and some of them lead to new s-confinement phases. As a check of our analysis we compute superconformal indices for these theories. |
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ISSN: | 1029-8479 |
DOI: | 10.1007/JHEP05(2018)017 |