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Finite-gap equations for strings on AdS_3 x S^3 x T^4 with mixed 3-form flux

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arxiv 1405.6087 v2 pith:URYH5O2C submitted 2014-05-23 hep-th

classification hep-th
keywords equationsfinite-gapphasesall-loopansatzbetheclassicalconsider
verification ladder T0 review T1 audit T2 compute T3 formal
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We study superstrings on AdS_3 x S^3 x T^4 supported by a combination of Ramond-Ramond and Neveu-Schwarz-Neveu-Schwarz three form fluxes, and construct a set of finite-gap equations that describe the classical string spectrum. Using the recently proposed all-loop S-matrix we write down the all-loop Bethe ansatz equations for the massive sector. In the thermodynamic limit the Bethe ansatz reproduces the finite-gap equations. As part of this derivation we propose expressions for the leading order dressing phases. These phases differ from the well-known Arutyunov-Frolov-Staudacher phase that appears in the pure Ramond-Ramond case. We also consider the one-loop quantization of the algebraic curve and determine the one-loop corrections to the dressing phases. Finally we consider some classical string solutions including finite size giant magnons and circular strings.

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  1. Covariant quantization of the superstring in $\rm AdS_3 \times S^3 \times T^4$ with mixed flux

    hep-th 2024-11 conditional novelty 7.0 of 10

    A manifestly supersymmetric and quantizable worldsheet action for the mixed-flux AdS3 x S3 x T4 superstring is constructed and shown to be one-loop conformal.

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