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Torsional string Newton-Cartan geometry for non-relativistic strings

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arxiv 2107.00642 v1 pith:ZYLARWEM submitted 2021-07-01 hep-th

Torsional string Newton-Cartan geometry for non-relativistic strings

classification hep-th
keywords stringgeometryformulationspacetargetfieldnon-relativisticalgebra
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We revisit the formulation of non-relativistic (NR) string theory and its target space geometry. We obtain a new formulation in which the geometry contains a two-form field that couples to the tension current and that transforms under string Galilei boosts. This parallels the Newton-Cartan one-form that couples to the mass current of a non-relativistic point particle. We show how this formulation of the NR string arises both from an infinite speed of light limit and a null reduction of the relativistic closed bosonic string. In both cases, the two-form originates from a combination of metric quantities and the Kalb-Ramond field. The target space geometry of the NR string is seen to arise from the gauging of a new algebra that is obtained by an Inonu-Wigner contraction of the Poincar\'e algebra extended by the symmetries of the Kalb-Ramond field. In this new formulation, there are no superfluous target space fields that can be removed by fixing a St\"uckelberg symmetry. Classically, there are no foliation/torsion constraints imposed on the target space geometry.

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Cited by 2 Pith papers

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  1. Quantum Fluctuations and Newton-Cartan Geometry for Non-Relativistic de Sitter space

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    The one-loop partition function for non-relativistic de Sitter gravity yields a T² prefactor consistent with four symmetry generators, and the bulk admits a torsionless Newton-Cartan geometry satisfying the non-relati...

  2. Worldsheet Formalism for Decoupling Limits in String Theory

    hep-th 2023-11 unverdicted novelty 6.0

    Develops worldsheet sigma model for fundamental strings in critical type IIA limit showing nodal singularities and derives T-duality web unifying decoupling limits including ambitwistor and Carrollian strings.