10,905 research outputs found

    Infra-red dynamics of D1-branes at the conifold

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    We study the infra-red dynamics of D1-branes at the conifold. We show using methods developed to study the infra-red dynamics of (4,4) theories, the infra-red degrees of freedom of the (2,2) theory of a single D1-brane at the conifold is that of a linear dilaton with background charge of 2\sqrt{2} and a compact scalar. The gauge theory of NN D1-branes at the conifold is used to formulate the matrix string in the conifold background.Comment: 20 pages, latex, some clarifications added, version to appear in JHE

    Excitations on wedge states and on the sliver

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    We study ghost number one excitations on the sliver to investigate the solution of string field actions around the tachyon vacuum. The generalized gluing and resmoothing theorem is used to develop a method for evaluating the effective action for excitations on both the wedge states and the sliver state. We analyze the discrete symmetries of the resulting effective action for excitations on the sliver. The gauge unfixed effective action till level two excitations on the sliver is evaluated. This is done for the case with the BRST operator c0c_0 and c0+(c2+c2)/2c_0 + (c_2 + c_{-2})/2 with excitations purely in the ghost sector. We find that the values of the effective potential at the local maximum lie close by for the zeroth and the second level of approximation. This indicates that level truncation in string field theory around the tachyon vacuum using excitations on the sliver converges for both choices of the BRST operator. It also provides evidence for the conjectured string field theory actions around the tachyon vacuum.Comment: 31 pages, 1 figure, refrences added, corrected some typo

    U(1) gauge invariance from open string field theory

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    The naive low energy effective action of the tachyon and the U(1) gauge field obtained from string field theory does not correspond to the world volume action of unstable branes in bosonic string theory. We show that there exists a field redefinition which relates the gauge field and the tachyon of the string field theory action to the fields in the world volume action of unstable branes. We identify a string gauge symmetry which corresponds to the U(1) gauge transformation. This is done to the first non-linear order in the fields. We examine the vector fluctuations at the tachyon condensate till level (4,8).Comment: Section on transverse photon at tachyon condensate added, 23 pages, Uses JHEP.cl

    Anti-de Sitter gravity associated with the supergroup SU(1,12)×SU(1,12)SU(1,1|2)\times SU(1,1|2)

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    We construct the anti-de Sitter supergravity in three dimensions associated with the supergroup SU(1,12)×SU(1,12)SU(1,1|2)\times SU(1,1|2). The field content and the action are inferred using the fact that AdSAdS supergravity theories in three dimensions are Chern-Simons theories.Comment: 8 pages, no figures, LaTe

    Supersymmetry of classical solutions in Chern-Simons higher spin supergravity

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    We construct and study classical solutions in Chern-Simons supergravity based on the superalgebra sl(N|N-1). The algebra for the N=3 case is written down explicitly using the fact that it arises as the global part of the super conformal W_3 superalgebra. For this case we construct new classical solutions and study their supersymmetry. Using the algebra we write down the Killing spinor equations and explicitly construct the Killing spinor for conical defects and black holes in this theory. We show that for the general sl(N|N-1) theory the condition for the periodicity of the Killing spinor can be written in terms of the products of the odd roots of the super algebra and the eigenvalues of the holonomy matrix of the background. Thus the supersymmetry of a given background can be stated in terms of gauge invariant and well defined physical observables of the Chern-Simons theory. We then show that for N\geq 4, the sl(N|N-1) theory admits smooth supersymmetric conical defects.Comment: 40 pages, includes discussion of conical defects for N\geq 4, typos corrected and presentation improve

    Black holes in higher spin supergravity

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    We study black hole solutions in Chern-Simons higher spin supergravity based on the superalgebra sl(3|2). These black hole solutions have a U(1) gauge field and a spin 2 hair in addition to the spin 3 hair. These additional fields correspond to the R-symmetry charges of the supergroup sl(3|2). Using the relation between the bulk field equations and the Ward identities of a CFT with N=2 super-W_3 symmetry, we identify the bulk charges and chemical potentials with those of the boundary CFT. From these identifications we see that a suitable set of variables to study this black hole is in terms of the charges present in three decoupled bosonic sub-algebras of the N=2 super-W_3 algebra. The entropy and the partition function of these R-charged black holes are then evaluated in terms of the charges of the bulk theory as well as in terms of its chemical potentials. We then compute the partition function in the dual CFT and find exact agreement with the bulk partition function.Comment: 27 pages. Published versio

    Spinning strings and minimal surfaces in AdS3AdS_3 with mixed 3-form fluxes

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    Motivated by the recent proposal for the S-matrix in AdS3×S3AdS_3\times S^3 with mixed three form fluxes, we study classical folded string spinning in AdS3AdS_3 with both Ramond and Neveu-Schwarz three form fluxes. We solve the equations of motion of these strings and obtain their dispersion relation to the leading order in the Neveu-Schwarz flux bb. We show that dispersion relation for the spinning strings with large spin S{\cal S} acquires a term given by λ2πb2log2S-\frac{\sqrt{\lambda}}{2\pi} b^2\log^2 {\cal S} in addition to the usual λπlogS\frac{\sqrt\lambda}{\pi} \log {\cal S} term where λ\sqrt{\lambda} is proportional to the square of the radius of AdS3AdS_3. Using SO(2,2) transformations and re-parmetrizations we show that these spinning strings can be related to light like Wilson loops in AdS3AdS_3 with Neveu-Schwarz flux bb. We observe that the logarithmic divergence in the area of the light like Wilson loop is also deformed by precisely the same coefficient of the b2log2S b^2 \log^2 {\cal S} term in the dispersion relation of the spinning string. This result indicates that the coefficient of b2log2S b^2 \log^2 {\cal S} has a property similar to the coefficient of the logS\log {\cal S} term, known as cusp-anomalous dimension, and can possibly be determined to all orders in the coupling λ\lambda using the recent proposal for the S-matrix.Comment: 34 pages, Accepted for publication in JHE

    Dyon degeneracies from Mathieu moonshine

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    We construct the Siegel modular forms associated with the theta lift of twisted elliptic genera of K3K3 orbifolded with gg' corresponding to the conjugacy classes of the Mathieu group M24M_{24}. We complete the construction for all the classes which belong to M23M24M_{23} \subset M_{24} and two other classes outside the subgroup M23M_{23}. For this purpose we provide the explicit expressions for all the twisted elliptic genera in all the sectors of these classes. We show that the Siegel modular forms satisfy the required properties for them to be generating functions of 1/41/4 BPS dyons of type II string theories compactified on K3×T2K3\times T^2 and orbifolded by gg' which acts as a ZN\mathbb{Z}_N automorphism on K3K3 together with a 1/N1/N shift on a circle of T2T^2. In particular the inverse of these Siegel modular forms admit a Fourier expansion with integer coefficients together with the right sign as predicted from black hole physics. Our analysis completes the construction of the partition function for dyons as well as the twisted elliptic genera for all the 77 CHL compactifications.Comment: Section on comparison with earlier literature added, References adde

    Properties of dyons in N=4{\cal N}=4 theories at small charges

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    We study three properties of 1/41/4 BPS dyons at small charges in string compactifications which preserve N=4{\cal N}=4 supersymmetry. We evaluate the non-trivial constant present in the one loop statistical entropy for N=4{\cal N}=4 compactifications of type IIB theory on K3×T2K3\times T^2 orbifolded by an order ZN\mathbb{Z}_N freely acting orbifold gg' including all CHL compactifications. This constant is trivial for the un-orbifolded model but we show that it contributes crucially to the entropy of low charge dyons in all the orbifold models. We then show that the meromorphic Jacobi form which captures the degeneracy of 1/41/4 BPS states for the first two non-trivial magnetic charges can be decomposed into an Appell-Lerch sum and a mock Jacobi form transforming under Γ0(N)\Gamma_0(N). This generalizes the earlier observation of Dabholkar-Murthy-Zagier to the orbifold models. Finally we study the sign of the Fourier coefficients of the inverse Siegel modular form which counts the index of 1/41/4 BPS dyons in N=4{\cal N}=4 models obtained by freely acting Z2\mathbb{Z}_2 and Z3\mathbb{Z}_3 orbifolds of type II theory compactified on T6T^6. We show that sign of the index for sufficiently low charges and ensuring that it counts single centered black holes, violates the positivity conjecture of Sen which indicates that these states posses non-trivial hair
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