arXiv · 1809.01138
$\mathcal{G}$-structure symmetries and anomalies in $(1,0)$ non-linear $\sigma$-models
Abstract
A new symmetry of $(1,0)$ supersymmetric non-linear $\sigma$-models in two dimensions with Fermi and mass sectors is introduced. It is a generalisation of the so-called special holonomy $W$-symmetry of Howe and Papadopoulos associated with structure group reductions of the target space $\mathcal{M}$. Our symmetry allows in particular non-trivial flux and instanton-like connections on vector bundles over $\mathcal{M}$. We also investigate potential anomalies and show that cohomologically non-trivial terms in the quantum effective action are invariant under a corrected version of our symmetry. Consistency with heterotic supergravity at first order in $\alpha'$ is manifest and discussed.
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Xenia de la Ossa, Marc-Antoine Fiset. 2018-09-04. $\mathcal{G}$-structure symmetries and anomalies in $(1,0)$ non-linear $\sigma$-models. https://doi.org/10.1007/jhep01(2019)062
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