Induced low-energy effective action in the 6D, N=(1,0) hypermultiplet theory on the vector multiplet background
arXiv:1604.06186 · doi:10.1016/j.physletb.2016.06.030
Abstract
We consider the six dimensional N=(1,0) hypermultiplet model coupled to an external field of the Abelian vector multiplet in harmonic superspace approach. Using the superfield proper-time technique we find the divergent part of the effective action and derive the complete finite induced low-energy superfield effective action. This effective action depends on external field and contains in bosonic sector all the powers of the constant Maxwell field strength. The obtained result can be treated as the 6D, N=(1,0) supersymmetric Heisenberg-Euler type effective action.
15 pages; v2: minor corrections
References in corpus (5)
- New superconformal models in six dimensions: Gauge group and representation structure
- Construction of 6D supersymmetric field models in N=(1,0) harmonic superspace
- Five-dimensional supersymmetric Chern-Simons action as a hypermultiplet quantum correction
- The anomalous current multiplet in 6D minimal supersymmetry
- Leading low-energy effective action in the 6D hypermultiplet theory on a vector/tensor background
Cited by in corpus (6)
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- The low-energy N=4 SYM effective action in diverse harmonic superspaces
- Chiral anomalies in six dimensions from harmonic superspace
- Low-energy , SYM effective action beyond the leading approximation
- One-loop divergences in the six-dimensional hypermultiplet self-coupling model