Holography of mass-deformed M2-branes
arXiv:1101.1101
Abstract
We find and study the gravity duals of the supersymmetric vacua of N=6 mass-deformed Chern-Simons-matter theory for M2-branes. The classical solution extends that of Lin, Lunin and Maldacena by introducing a Z_k quotient and discrete torsions. The gravity vacua perfectly map to the recently identified supersymmetric field theory vacua. We calculate the masses of BPS charged particles in the weakly coupled field theory, which agree with the classical open membrane analysis when both calculations are reliable. We also comment on how non-relativistic conformal symmetry is realized in our gravity duals in a non-geometric way.
48 pages, 12 figures, uses youngtab.sty
References in corpus (14)
- Gauge Symmetry and Supersymmetry of Multiple M2-Branes
- Algebraic structures on parallel M2-branes
- Modeling Multiple M2's
- Toward an AdS/cold atoms correspondence: a geometric realization of the Schroedinger symmetry
- Gravity duals for non-relativistic CFTs
- Supersymmetry enhancement by monopole operators
- Three-dimensional N=6 SCFT's and their membrane dynamics
- Scattering in Mass-Deformed N>=4 Chern-Simons Models
- 1/2-BPS Wilson Loops and Vortices in ABJM Model
- Non-Relativistic M2-brane Gauge Theory and New Superconformal Algebra
- Nonrelativistic Superconformal M2-Brane Theory
- Vortex-type Half-BPS Solitons in ABJM Theory
- Supersymmetric non-relativistic geometries in M-theory
- Observables and Correlators in Nonrelativistic ABJM Theory
Cited by in corpus (5)
- Renormalized Entanglement Entropy Flow in Mass-deformed ABJM Theory
- Vortices and 3 dimensional dualities
- Comments on domain walls in holographic duals of mass deformed conformal field theories
- Abelian Projections of the Mass-deformed ABJM theory and Weakly Curved Dual Geometry
- Quantization of charges and fluxes in warped Stenzel geometry