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.
The rise of graphene.Nature materials, 6(3):183–191
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Periodic topological defects open a tunable band-gap in graphene only when supercell size N is a multiple of three due to Brillouin zone folding, with flower-like defects producing larger gaps.
citing papers explorer
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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.
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Symmetry Guided Band-Gap Opening via Periodic Topological Defects in Graphene
Periodic topological defects open a tunable band-gap in graphene only when supercell size N is a multiple of three due to Brillouin zone folding, with flower-like defects producing larger gaps.