98 research outputs found

    SUSY Enhancements in (0,4) Deformations of AdS_3/CFT_2

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    We discuss a marginal deformation of the SL(2,R) x SU(2) x U(1)^4 WZW model, which describes string theory on AdS_3 x S^3 x T^4, that corresponds to warping the S^3 factor. This deformation breaks part of the N=(4,4) supersymmetry of the undeformed dual CFT to N=(0,4) supersymmetry. In the spirit of work by Giveon, Kutasov, and Seiberg, we construct the asymptotic spacetime symmetry algebra from worldsheet operators and find a restoration of (4,4) supersymmetry at discrete values of the deformation parameter. We explain this result from various perspectives: the worldsheet, supergravity, and from the singular D1-D5 CFT. The supergravity analysis includes an asymptotic symmetry computation of the level of the affine SU(2) R-symmetry, which arises purely from B-field contributions.Comment: 16 pages; v2: references adde

    Conformal Gravity from AdS/CFT mechanism

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    We explicitly calculate the induced gravity theory at the boundary of an asymptotically Anti-de Sitter five dimensional Einstein gravity. We also display the action that encodes the dynamics of radial diffeomorphisms. It is found that the induced theory is a four dimensional conformal gravity plus a scalar field. This calculation confirms some previous results found by a different approach.Comment: Revtex 8 pages, To be published in Phys. Rev.

    Aspects of Defects in 3d-3d Correspondence

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    In this paper we study supersymmetric co-dimension 2 and 4 defects in the compactification of the 6d (2,0)(2,0) theory of type AN−1A_{N-1} on a 3-manifold MM. The so-called 3d-3d correspondence is a relation between complexified Chern-Simons theory (with gauge group SL(N,C)SL(N, \mathbb{C})) on MM and a 3d N=2\mathcal{N}=2 theory TN[M]T_{N}[M]. We establish a dictionary for this correspondence in the presence of supersymmetric defects, which are knots/links inside the 3-manifold. Our study employs a number of different methods: state-integral models for complex Chern-Simons theory, cluster algebra techniques, domain wall theory T[SU(N)]T[SU(N)], 5d N=2\mathcal{N}=2 SYM, and also supergravity analysis through holography. These methods are complementary and we find agreement between them. In some cases the results lead to highly non-trivial predictions on the partition function. Our discussion includes a general expression for the cluster partition function, in particular for non-maximal punctures and N>2N>2. We also highlight the non-Abelian description of the 3d N=2\mathcal{N}=2 TN[M]T_N[M] theory with defect included, as well as its Higgsing prescription and the resulting `refinement' in complex CS theory. This paper is a companion to our shorter paper arXiv:1510.03884, which summarizes our main results.Comment: 129 pages (sorry), 22 figure

    Hybrid models for homological projective duals and noncommutative resolutions

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    We study hybrid models arising as homological projective duals (HPD) of certain projective embeddings f:X→P(V)f:X\rightarrow\mathbb{P}(V) of Fano manifolds XX. More precisely, the category of B-branes of such hybrid models corresponds to the HPD category of the embedding ff. B-branes on these hybrid models can be seen as global matrix factorizations over some compact space BB or, equivalently, as the derived category of the sheaf of A\mathcal{A}-modules on BB, where A\mathcal{A} is an A∞A_{\infty} algebra. This latter interpretation corresponds to a noncommutative resolution of BB. We compute explicitly the algebra A\mathcal{A} by several methods, for some specific class of hybrid models, and find that in general it takes the form of a smash product of an A∞A_{\infty} algebra with a cyclic group. Then we apply our results to the HPD of ff corresponding to a Veronese embedding of projective space and the projective embedding of Fano complete intersections in Pn\mathbb{P}^{n}.Comment: 50 pages, LaTeX; v3: references added, several improvements on the examples and the section on complete intersections. Published versio
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