The effective supergravity of little string theory

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Abstract

In this work we present the minimal supersymmetric extension of the five-dimensional dilaton-gravity theory that captures the main properties of the holographic dual of little string theory. It is described by a particular gauging of N= 2 supergravity coupled with one vector multiplet associated with the string dilaton, along the U(1) subgroup of SU(2) R-symmetry. The linear dilaton in the fifth coordinate solution of the equations of motion (with flat string frame metric) breaks half of the supersymmetries to N= 1 in four dimensions. Interest in the linear dilaton model has lately been revived in the context of the clockwork mechanism, which has recently been proposed as a new source of exponential scale separation in field theory.

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Antoniadis, I., Delgado, A., Markou, C., & Pokorski, S. (2018). The effective supergravity of little string theory. European Physical Journal C, 78(2). https://doi.org/10.1140/epjc/s10052-018-5632-4

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