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Probing anomalous driving
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We study the effects of driving a magnetically charged black brane solution of Einstein-Maxwell-Chern-Simons theory by a time dependent electric field. From a holographic perspective, we find that placing a sample in a background magnetic field and driving the system via a parallel electric field generates a charge current which may oscillate for long periods and (or) may exhibit non-Ohmic behavior. We discuss how these two effects manifest themselves in various types of quenches and in periodic driving of the sample.
Forward citations
Cited by 4 Pith papers
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Nonequilibrium steady states in driven holographic Weyl semi-metals
A driven holographic Weyl semimetal supports a stable nonequilibrium steady state, becomes superharmonic and then chaotic at stronger driving, and exhibits strong-coupling chiral pumping in a magnetic field.
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Anomalous resonance in Weyl semimetals: A holographic study of non-linear effects
Fully back-reacted holographic simulations show nonlinear corrections to anomalously long-lived current oscillations are tiny, so decay rates can be made arbitrarily small at low 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.
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Chiral Plasma under Strong Magnetic Fields: A Holographic Analysis of Transport Phenomena
Holographic U(1)V x U(1)A Maxwell-Chern-Simons theory in Schwarzschild-AdS5 yields thirteen momentum- and B-field-dependent transport coefficient functions for chiral plasma currents, applied to negative magnetoresist...
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