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Title: Heterotically deformed sigma models on the world sheet of semilocal strings in supersymmetric QED

Journal Article · · Physical Review D

Not provided.A new two-dimensional N = (0,2) supersymmetric nonlinear sigma model describes the dynamics of internal moduli of the BPS semilocal vortex string supported in four-dimensional N = 2 supersymmetric QED. While the core of these strings is very similar to Abrikosov-Nielsen-Olesen vortices, they are defined with a characteristic size modulus, much like the instanton lump size. This entails that the constituting fields of the vortex do not decay exponentially, as one goes far away from the core of the string, but as a rational function. The appearance of an extra scale in the problem also allows for an explicit, analytic, approximate solution to be written for the BPS equation, surprisingly. Despite the conceptually large differences between semilocal and non-Abelian vortices, it appears that the moduli structures have one main common feature, both undergo the same kind of heterotic deformation when a supersymmetry breaking potential term is added to the spacetime theory, moving from N = 2 to N = 1. By adding a mass term for the gauge scalar multiplet, a heterotic deformation develops on the world sheet, which breaks supersymmetry down to (0, 2) by coupling supertranslational fermionic zero modes to supersize ones. Such an interaction between zero modes of two different sectors was already hypothesized and subsequently found for non-Abelian strings, providing a neat way of circumventing accidental supersymmetry enhancement via Zumino’s theorem. We find that, for small values of the spacetime mass term, an entirely analogous term develops on the world sheet of semilocal strings.

Research Organization:
Univ. of Minnesota, Minneapolis, MN (United States)
Sponsoring Organization:
USDOE Office of Science (SC)
Grant/Contract Number:
SC0011842
OSTI ID:
1509501
Alternate ID(s):
OSTI ID: 1611689
Journal Information:
Physical Review D, Journal Name: Physical Review D Vol. 99 Journal Issue: 8; ISSN 2470-0010
Publisher:
American Physical SocietyCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 1 work
Citation information provided by
Web of Science

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