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      A non-integrable quench from AdS/dCFT

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          Abstract

          We study the matrix product state which appears as the boundary state of the AdS/dCFT set-up where a probe D7 brane wraps two two-spheres stabilized by fluxes. The matrix product state plays a dual role, on one hand acting as a tool for computing one-point functions in a domain wall version of N=4 SYM and on the other hand acting as the initial state in the study of quantum quenches of the Heisenberg spin chain. We derive a number of selection rules for the overlaps between the matrix product state and the eigenstates of the Heisenberg spin chain and in particular demonstrate that the matrix product state does not fulfill a recently proposed integrability criterion. Accordingly, we find that the overlaps can not be expressed in the usual factorized determinant form. Nevertheless, we derive some exact results for one-point functions of simple operators and present a closed formula for one-point functions of more general operators in the limit of large spin-chain length.

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          Most cited references24

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          The Bethe-ansatz for Script N = 4 super Yang-Mills

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            Diagonalisation d'une classe d'hamiltoniens de spin

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              Open and closed string interpretation of SUSY CFT's on branes with boundaries

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                Author and article information

                Journal
                25 June 2019
                Article
                1906.10714
                6fecd7b6-69ea-4743-a0c2-55a002fdb866

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Custom metadata
                6 pages
                hep-th cond-mat.stat-mech

                Condensed matter,High energy & Particle physics
                Condensed matter, High energy & Particle physics

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