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Low energy dynamics of $U(1)$ vortices in systems with cholesteric vacuum structure

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arxiv 1409.1508 v1 pith:THQ7SNX6 submitted 2014-09-04 hep-th

classification hep-th
keywords energystructuretermadditionalbreakingcausescholestericdynamics
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abstract

We discuss flux tubes in systems with $U(1)$ gauge, and spin-orbit locked $SO(3)_{S+L}$ symmetry. The spin-orbit locking is achieved explicitly in the Lagrangian by introducing a parity violating twist term which causes the spontaneous breaking of $SO(3)_{S+L} \rightarrow SO(2)$. Additionally, this term causes a spontaneous breaking of the translational symmetry along a particular direction. Thus, the system appears with a cholesteric vacuum under certain conditions of the parameter space. With this term, the system admits $U(1)$ topologically stable vortices with additional structure in the vortex cores. This added structure leads to additional moduli appearing in the low energy dynamics. We determine these solutions and their low energy theory.

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  1. Vortons with Abelian and non-Abelian currents and their stability

    hep-th 2019-09 conditional novelty 5.0 of 10

    Vortons exist numerically in U(1)xU(1) and U(1)xSO(3) global models, obey an approximate Regge relation, decay into spinning Q-balls above a critical frequency, and prefer equatorial internal configurations.

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