Global Symmetries, Counterterms, and Duality in Chern-Simons Matter Theories with Orthogonal Gauge Groups
We study three-dimensional gauge theories based on orthogonal groups. Depending on the global form of the group these theories admit discrete \theta θ -parameters, which control the weights in the sum over topologically distinct gauge bundles. We derive level-rank duality for these topological field...
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Veröffentlicht in: | SciPost physics 2018-04, Vol.4 (4), p.021, Article 021 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | eng |
Online-Zugang: | Volltext |
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Zusammenfassung: | We study three-dimensional gauge theories based on orthogonal groups.
Depending on the global form of the group these theories admit discrete
\theta
θ
-parameters,
which control the weights in the sum over topologically distinct gauge
bundles. We derive level-rank duality for these topological field
theories. Our results may also be viewed as level-rank duality for
SO(N)_{K}
S
O
(
N
)
K
Chern-Simons theory in the presence of background fields for discrete
global symmetries. In particular, we include the required counterterms
and analysis of the anomalies. We couple our theories to charged matter
and determine how these counterterms are shifted by integrating out
massive fermions. By gauging discrete global symmetries we derive new
boson-fermion dualities for vector matter, and present the phase diagram
of theories with two-index tensor fermions, thus extending previous
results for
SO(N)
S
O
(
N
)
to other global forms of the gauge group. |
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ISSN: | 2542-4653 2542-4653 |
DOI: | 10.21468/SciPostPhys.4.4.021 |