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Numerical studies of the ABJM theory for arbitrary N at arbitrary coupling constant

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arxiv 1202.5300 v3 pith:2CX7JNC6 submitted 2012-02-23 hep-th hep-lat

Numerical studies of the ABJM theory for arbitrary N at arbitrary coupling constant

classification hep-th hep-lat
keywords arbitrarytheoryconstantm-theoryabjmcouplingmatrixmethod
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that the ABJM theory, which is an N=6 superconformal U(N)*U(N) Chern-Simons gauge theory, can be studied for arbitrary N at arbitrary coupling constant by applying a simple Monte Carlo method to the matrix model that can be derived from the theory by using the localization technique. This opens up the possibility of probing the quantum aspects of M-theory and testing the AdS_4/CFT_3 duality at the quantum level. Here we calculate the free energy, and confirm the N^{3/2} scaling in the M-theory limit predicted from the gravity side. We also find that our results nicely interpolate the analytical formulae proposed previously in the M-theory and type IIA regimes. Furthermore, we show that some results obtained by the Fermi gas approach can be clearly understood from the constant map contribution obtained by the genus expansion. The method can be easily generalized to the calculations of BPS operators and to other theories that reduce to matrix models.

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  1. Bootstrapping ABJM theory

    hep-th 2026-02 unverdicted novelty 7.0

    A bootstrap approach applied to ABJM theory yields analytic derivations of instanton corrections to the free energy and to 1/2 and 1/6 BPS Wilson loops, confirming relations previously known only conjecturally.