Axion dark matter induces a resonantly enhanced pressure between graphene plates whose peaks and widths are controlled by graphene conductivity, chemical potential and dissipation, yielding projected sensitivities competitive in optimistic regimes.
Optical far-infrared properties of a graphene monolayer and multilayer.Phys- ical Review B—Condensed Matter and Materials Physics, 76(15):153410, 2007
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Axion-Induced Casimir Interaction Between Graphene Plates
Axion dark matter induces a resonantly enhanced pressure between graphene plates whose peaks and widths are controlled by graphene conductivity, chemical potential and dissipation, yielding projected sensitivities competitive in optimistic regimes.