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Related papers: Poisson-Lie T-plurality for WZW backgrounds

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Poisson-Lie T-duality and plurality are important solution generating techniques in string theory and (generalized) supergravity. Since duality/plurality does not preserve conformal invariance, the usual beta function equations are replaced…

High Energy Physics - Theory · Physics 2020-04-16 Ladislav Hlavatý , Ivo Petr

We proceed to construct a dual pair for the $AdS_3 \times S^3$ background by applying non-Abelian T-duality (here as Poisson-Lie (PL) T-duality on a semi-Abelian double). By using a certain parametrization of the $4$-dimensional Lie group…

High Energy Physics - Theory · Physics 2024-10-22 Ali Eghbali

In previous papers we have presented many purely bosonic solutions of Generalized Supergravity Equations obtained by Poisson-Lie T-duality and plurality of flat and Bianchi cosmologies. In this paper we focus on their compactifications and…

High Energy Physics - Theory · Physics 2020-09-30 Ladislav Hlavatý , Ivo Petr

We generalize the formulation of Poisson-Lie (PL) T-plurality proposed by R. von Unge [JHEP 07 (2002) 014] from Lie groups to Lie supergroups. By taking a convenient ansatz for metric of the $\sigma$-model in terms of the left-invariant…

High Energy Physics - Theory · Physics 2020-07-20 Ali Eghbali

The supersymmetric generalization of Poisson-Lie T-duality in superconformal WZNW models is considered. It is shown that the classical N=2 superconformal WZNW models posses a natural Poisson-Lie symmetry which allows to construct dual…

High Energy Physics - Theory · Physics 2009-10-30 S. E. Parkhomenko

String theory has the T-duality symmetry when the target space has Abelian isometries. A generalization of the T-duality, where the isometry group is non-Abelian, is known as the non-Abelian T-duality, which works well as a…

High Energy Physics - Theory · Physics 2019-10-24 Yuho Sakatani

Poisson-Lie T-duality in N=2 superconformal WZNW models on the real Lie groups is considered. It is shown that Poisson-Lie T-duality is governed by the complexifications of the corresponding real groups endowed with Semenov-Tian-Shansky…

High Energy Physics - Theory · Physics 2009-10-30 S. E. Parkhomenko

Poisson-Lie duality is a generalization of abelian and non-abelian T-duality, and it can be viewed as a map between solutions of the low-energy effective equations of string theory, i.e. at the (super)gravity level. We show that this fact…

High Energy Physics - Theory · Physics 2020-11-18 Riccardo Borsato , Linus Wulff

Poisson-Lie T-duality/plurality was recently generalized to Jacobi-Lie T-plurality formulated in terms of Double Field Theory and based on Leibniz algebras given by structure coefficients $f_{ab}{}^{c},f_{c}{}^{ab},$ and $Z_a,Z^a$. We…

High Energy Physics - Theory · Physics 2024-07-15 Ladislav Hlavatý , Ivo Petr

Starting from the classification of 6-dimensional Drinfeld doubles and their decomposition into Manin triples we construct 3-dimensional Poisson-Lie T-dual or more precisely T-plural sigma models. Of special interest are those that are…

High Energy Physics - Theory · Physics 2010-02-03 L. Hlavaty , L. Snobl

Motivated by super Poisson-Lie (PL) symmetry of the Wess-Zumino-Witten (WZW) model based on the $(C^3+A)$ Lie supergroup of our previous work [A. Eghbali {\it et al.} JHEP 07 (2013) 134], we first obtain and classify all Drinfeld…

High Energy Physics - Theory · Physics 2024-09-17 Ali Eghbali , Adel Rezaei-Aghdam

The Poisson-Lie T-plurality is an equivalence of string theories on various cosets $\mathcal{D}/\tilde{G}$, $\mathcal{D}/\tilde{G}'$, $\cdots$, where $\mathcal{D}$ is a Drinfel'd double and $\tilde{G}$, $\tilde{G}'$, $\cdots$ are maximal…

High Energy Physics - Theory · Physics 2022-06-15 Yuho Sakatani

The Hamiltonian formalism offers a natural framework for discussing the notion of Poisson Lie T-duality. This is because the duality is inherent in the Poisson structures alone and exists regardless of the choice of Hamiltonian. Thus one…

High Energy Physics - Theory · Physics 2009-10-31 A. Stern

We formulate Poisson-Lie T-duality in a path-integral manner that allows us to analyze the quantum corrections. Using the path-integral, we rederive the most general form of a Poisson-Lie dualizeable background and the generalized Buscher…

High Energy Physics - Theory · Physics 2008-11-26 Eugene Tyurin , Rikard von Unge

We investigate Poisson-Lie duals of the $\eta$-deformed $\mathrm{AdS}_2 \times \mathrm{S}^2 \times \mathrm{T}^6$ superstring. The $\eta$-deformed background satisfies a generalisation of the type II supergravity equations. We discuss three…

High Energy Physics - Theory · Physics 2019-04-18 Ben Hoare , Fiona K. Seibold

Poisson-Lie (PL) T-duality has received much attention over the last five years in connection with integrable string worldsheet theories. At the level of the worldsheet, the algebraic structure underpinning these connections is made…

High Energy Physics - Theory · Physics 2019-04-24 Saskia Demulder , Falk Hassler , Daniel C. Thompson

Poisson-Lie T-duality is explained using the language of Courant algebroids.

Symplectic Geometry · Mathematics 2015-09-30 Pavol Ševera

We investigate (non-)Abelian T-duality from the perspective of Poisson-Lie T-plurality. We show that sigma models related by duality/plurality are given not only by Manin triples obtained from decompositions of Drinfel'd double, but also by…

High Energy Physics - Theory · Physics 2019-05-06 Ladislav Hlavaty , Ivo Petr

The description of the two sets of (4,0) supersymmetric models that are related by non-abelian duality transformations is given. The (4,0) supersymmetric WZNW is constructed and the formulation of the (4,0) supersymmetric sigma model dual…

High Energy Physics - Theory · Physics 2008-11-26 F. Assaoui , N. Benhamou , T. Lhallabi

Classical equations of motion for three-dimensional sigma-models in curved background are solved by a transformation that follows from the Poisson-Lie T-plurality and transform them into the equations in the flat background. Transformations…

High Energy Physics - Theory · Physics 2008-11-26 L. Hlavaty , J. Hybl , M. Turek
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