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Asymmetric Orbifolds, Non-Geometric Fluxes and Non-Commutativity in Closed String Theory

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abstract

In this paper we consider a class of exactly solvable closed string flux backgrounds that exhibit non-commutativity in the closed string coordinates. They are realized in terms of freely-acting asymmetric Z_N-orbifolds, which are themselves close relatives of twisted torus fibrations with elliptic Z_N-monodromy (elliptic T-folds). We explicitly construct the modular invariant partition function of the models and derive the non-commutative algebra in the string coordinates, which is exact to all orders in {\alpha}'. Finally, we relate these asymmetric orbifold spaces to inherently stringy Scherk-Schwarz backgrounds and non-geometric fluxes.

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hep-th 1

years

2024 1

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CONDITIONAL 1

representative citing papers

Towards a String Realization of the Dark Dimension via T-folds

hep-th · 2024-11-28 · conditional · novelty 6.0

A Scherk-Schwarz T-fold compactification is engineered so that, along a selected runaway trajectory, the scalar potential scales as V proportional to m_KK^4, as required by the Dark Dimension Scenario.

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  • Towards a String Realization of the Dark Dimension via T-folds hep-th · 2024-11-28 · conditional · none · ref 36 · internal anchor

    A Scherk-Schwarz T-fold compactification is engineered so that, along a selected runaway trajectory, the scalar potential scales as V proportional to m_KK^4, as required by the Dark Dimension Scenario.