A large Chern-Simons coupling makes quasinormal modes of magnetically charged AdS black branes approach real frequencies, yielding long-lived modes in the dual boundary theory.
Striped instability of a holographic Fermi-like liquid
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abstract
We consider a holographic description of a system of strongly-coupled fermions in 2+1 dimensions based on a D7-brane probe in the background of D3-branes. The black hole embedding represents a Fermi-like liquid. We study the excitations of the Fermi liquid system. Above a critical density which depends on the temperature, the system becomes unstable towards an inhomogeneous modulated phase which is similar to a charge density and spin wave state. The essence of this instability can be effectively described by a Maxwell-axion theory with a background electric field. We also consider the fate of zero sound at non-zero temperature.
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Long lived quasi normal modes
A large Chern-Simons coupling makes quasinormal modes of magnetically charged AdS black branes approach real frequencies, yielding long-lived modes in the dual boundary theory.