6D fractional quantum Hall effect View Full Text


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Article Info

DATE

2018-05

AUTHORS

Jonathan J. Heckman, Luigi Tizzano

ABSTRACT

We present a 6D generalization of the fractional quantum Hall effect involving membranes coupled to a three-form potential in the presence of a large background four-form flux. The low energy physics is governed by a bulk 7D topological field theory of abelian three-form potentials with a single derivative Chern-Simons-like action coupled to a 6D anti-chiral theory of Euclidean effective strings. We derive the fractional conductivity, and explain how continued fractions which figure prominently in the classification of 6D superconformal field theories correspond to a hierarchy of excited states. Using methods from conformal field theory we also compute the analog of the Laughlin wavefunction. Compactification of the 7D theory provides a uniform perspective on various lower-dimensional gapped systems coupled to boundary degrees of freedom. We also show that a supersymmetric version of the 7D theory embeds in M-theory, and can be decoupled from gravity. Encouraged by this, we present a conjecture in which IIB string theory is an edge mode of a 10 + 2-dimensional bulk topological theory, thus placing all twelve dimensions of F-theory on a physical footing. More... »

PAGES

120

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  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/jhep05(2018)120

    DOI

    http://dx.doi.org/10.1007/jhep05(2018)120

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1104137202


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