Dualities for 3d theories with tensor matter
- Creators
-
Kapustin, Anton
- Kim, Hyungchul
- Park, Jaemo
Abstract
We study dualities for N = 2 3d Chern-Simons matter theories with gauge groups U/Sp/O, matter in the two-index tensor representations (adjoint/symmetric/antisymmetric) in addition to the fundamental representation, and a superpotential. These dualities are analogous to Kutasov-Schwimmer-Seiberg dualities in 4d. We test them by computing the superconformal index and the partition function on S^3 for many dual pairs and find perfect agreement. In some cases we find a simple dual description for theories with tensor matter and no superpotential, thereby generalizing the "Duality Appetizer" of Jafferis and Yin to an infinite class of theories. We also investigate nonperturbative truncation of the chiral ring proposed in the context of 4d dualities.
Additional Information
© 2011 SISSA. Published for SISSA by Springer. Received: October 20, 2011; accepted: December 7, 2011; published: December 23, 2011. A.K. is supported in part by the DOE grant DE-FG02-92ER40701. J.P. is supported by the KOSEF Grant R01-2008-000-20370-0, the National Research Foundation of Korea (NRF) Grants No. 2009-0085995 and 2005-0049409 through the Center for Quantum Spacetime (CQUeST) of Sogang University. J.P. also appreciates APCTP for its stimulating environment for research. A.K. and J.P. acknowledge Simons Summer Workshop on Mathematics and Physics 2011 for hospitality while the current work was initiated.Attached Files
Submitted - 1110.2547v2.pdf
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Additional details
- Eprint ID
- 29377
- DOI
- 10.1007/JHEP12(2011)087
- Resolver ID
- CaltechAUTHORS:20120217-154342890
- Department of Energy (DOE)
- DE-FG02-92ER40701
- Korea Science and Engineering Foundation (KOSEF)
- R01-2008-000-20370-0
- National Research Foundation of Korea
- 2009-0085995
- National Research Foundation of Korea
- 2005-0049409
- Created
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2012-02-21Created from EPrint's datestamp field
- Updated
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2021-11-09Created from EPrint's last_modified field
- Caltech groups
- Caltech Theory