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The global gravitational anomaly of the self-dual field theory

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abstract

We derive a formula for the global gravitational anomaly of the self-dual field theory on an arbitrary compact oriented Riemannian manifold. Along the way, we uncover interesting links between the theory of determinant line bundles of Dirac operators, Siegel theta functions and a functor constructed by Hopkins and Singer. We apply our result to type IIB supergravity and show that in the naive approximation where the Ramond-Ramond fields are treated as differential cohomology classes, the global gravitational anomaly vanishes on all 10-dimensional spin manifolds. We sketch a few other important physical applications.

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hep-th 1

years

2019 1

verdicts

ACCEPT 1

representative citing papers

IIB flux non-commutativity and the global structure of field theories

hep-th · 2019-08-21 · accept · novelty 7.0

The paper traces the global-structure ambiguity of 6d (2,0) theories to non-commuting RR flux boundary conditions in IIB on C^2/Γ, reproducing the known classification of 4d N=4 theories and adding new results on duality defects and Hecke transforms.

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  • IIB flux non-commutativity and the global structure of field theories hep-th · 2019-08-21 · accept · none · ref 66 · internal anchor

    The paper traces the global-structure ambiguity of 6d (2,0) theories to non-commuting RR flux boundary conditions in IIB on C^2/Γ, reproducing the known classification of 4d N=4 theories and adding new results on duality defects and Hecke transforms.