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D2-brane Chern-Simons theories: F-maximization = a-maximization

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arxiv 1507.05817 v2 pith:KBYXLWCO submitted 2015-07-21 hep-th

D2-brane Chern-Simons theories: F-maximization = a-maximization

classification hep-th
keywords theorygaugecalabi-yauchern-simonsenergyfreemaximizingprobing
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study a system of N D2-branes probing a generic Calabi-Yau three-fold singularity in the presence of a non-zero quantized Romans mass n. We argue that the low-energy effective N = 2 Chern-Simons quiver gauge theory flows to a superconformal fixed point in the IR, and construct the dual AdS_4 solution in massive IIA supergravity. We compute the free energy F of the gauge theory on S^3 using localization. In the large N limit we find F = c(nN)^{1/3}a^{2/3}, where c is a universal constant and a is the a-function of the "parent" four-dimensional N = 1 theory on N D3-branes probing the same Calabi-Yau singularity. It follows that maximizing F over the space of admissible R-symmetries is equivalent to maximizing a for this class of theories. Moreover, we show that the gauge theory result precisely matches the holographic free energy of the supergravity solution, and provide a similar matching of the VEV of a BPS Wilson loop operator.

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Cited by 2 Pith papers

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    A universal one-loop holographic computation predicts the subleading large-N behavior of 1/2-BPS Wilson loops in two families of 3d N=2 Chern-Simons-matter theories, including an Airy-function completion for M-theory duals.