Non-geometric Kaluza-Klein monopoles and magnetic duals of M-theory R-flux backgrounds

被引:0
作者
Dieter Lüst
Emanuel Malek
Richard J. Szabo
机构
[1] Ludwig-Maximilians-Universität München,Arnold Sommerfeld Center for Theoretical Physics, Department für Physik
[2] Werner-Heisenberg-Institut,Max
[3] Heriot-Watt University,Planck
[4] Maxwell Institute for Mathematical Sciences,Institut für Physik
[5] The Higgs Centre for Theoretical Physics,Department of Mathematics
来源
Journal of High Energy Physics | / 2017卷
关键词
Flux compactifications; M-Theory; Non-Commutative Geometry; p-branes;
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摘要
We introduce a magnetic analogue of the seven-dimensional nonassociative octonionic R-flux algebra that describes the phase space of M2-branes in four-dimensional locally non-geometric M-theory backgrounds. We show that these two algebras are related by a Spin(7) automorphism of the 3-algebra that provides a covariant description of the eight-dimensional M-theory phase space. We argue that this algebra also underlies the phase space of electrons probing a smeared magnetic monopole in quantum gravity by showing that upon appropriate contractions, the algebra reduces to the noncommutative algebra of a spin foam model of three-dimensional quantum gravity, or to the nonassociative algebra of electrons in a background of uniform magnetic charge. We realise this set-up in M-theory as M-waves probing a delocalised Kaluza-Klein monopole, and show that this system also has a seven-dimensional phase space. We suggest that the smeared Kaluza-Klein monopole is non-geometric because it cannot be described by a local metric. This is the magnetic analogue of the local non-geometry of the R-flux background and arises because the smeared Kaluza-Klein monopole is described by a U(1)-gerbe rather than a U(1)-fibration.
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