The spectral gap of the ABJM model: A holographic perspective from uplifted higher-dimensional geometries
Mahdis Ghodrati
Abstract
We study the U(1)4 charged black brane solution of four-dimensional gauged supergravity and analyze the fermionic response in this geometry, which is holographically dual to 3d N=2 SCFT ABJM models. Similar to DeWolfe:2013fha, we show that a gap exists in the states of the conformal field theory, which corresponds to the different limiting behaviors of the two unequal chemical potentials of the four-charge geometry. We study the behavior of this gap and also the stability of the near-horizon geometry by changing the parameters of the theory in various orders. We then categorize the 56 fermion modes of the geometry, find the coefficients of the Dirac equations for each mode, and comment on the behavior of the solution of the Dirac equation in different near-horizon limits. We then uplift the geometry to five-dimensional and then to eleven-dimensional geometries and, similar to Fareghbal:2008dy, we show that in both cases, a piece of BTZ × S2 or AdS3 × R2 emerges, and as a result, a decoupling sector in the field theory exists. We study the singularity of the near-horizon 4d geometry and the mentioned gap in these uplifted geometries.
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