Publication | Open Access
Quantum vortices, M2-branes and black holes
29
Citations
28
References
2019
Year
Magnetic Monopole OperatorsBlack Hole DynamicM-theoryEngineeringPhysicsBlack Hole PhysicsCosmologyEntropyBlack HoleQuantum Field TheoryBps VorticesQuantum Field Theory In Curved SpacetimeConformal Field TheoryGauge Field TheoryQuantum VorticesBrane TheoryMonopole Condensation
We study the partition functions of BPS vortices and magnetic monopole operators, in gauge theories describing $N$ M2-branes. In particular, we explore two closely related methods to study the Cardy limit of the index on $S^2\times\mathbb{R}$. The first method uses the factorization of this index to vortex partition functions, while the second one uses a continuum approximation for the monopole charge sums. Monopole condensation confines most of the $N^2$ degrees of freedom except $N^{\frac{3}{2}}$ of them, even in the high temperature deconfined phase. The resulting large $N$ free energy statistically accounts for the Bekenstein-Hawking entropy of large BPS black holes in $AdS_4\times S^7$. Our Cardy free energy also suggests a finite $N$ version of the $N^{\frac{3}{2}}$ degrees of freedom.
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