Existence of Multiple Vortices in Supersymmetric Gauge Field Theory
Abstract
Two sharp existence and uniqueness theorems are presented for solutions of multiple vortices arising in a six-dimensional brane-world supersymmetric gauge field theory under the general gauge symmetry group and with Higgs scalar fields in the fundamental representation of . Specifically, when the space of extra dimension is compact so that vortices are hosted in a 2-torus of volume , the existence of a unique multiple vortex solution representing respectively prescribed vortices arising in the species of the Higgs fields is established under the explicitly stated necessary and sufficient condition \[ n_i<\frac{g^2v^2}{8\pi N}|\Om|+\frac{1}{N}(1-\frac{1}{N}[\frac{g}{e}]^2)n,\quad i=1,...,N,] where and are the U(1) electromagnetic and SU(N) chromatic coupling constants, measures the energy scale of broken symmetry, and is the total vortex number; when the space of extra dimension is the full plane, the existence and uniqueness of an arbitrarily prescribed -vortex solution of finite energy is always ensured. These vortices are governed by a system of nonlinear elliptic equations, which may be reformulated to allow a variational structure. Proofs of existence are then developed using the methods of calculus of variations.
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Cite
@article{arxiv.1203.3071,
title = {Existence of Multiple Vortices in Supersymmetric Gauge Field Theory},
author = {Shouxin Chen and Yisong Yang},
journal= {arXiv preprint arXiv:1203.3071},
year = {2015}
}
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23 pages