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Dielectric Haloscopes to Search for Axion Dark Matter: Theoretical Foundations

Published 21 Dec 2016 in hep-ph, astro-ph.CO, astro-ph.HE, hep-ex, and physics.ins-det | (1612.07057v2)

Abstract: We study the underlying theory of dielectric haloscopes, a new way to detect dark matter axions. When an interface between different dielectric media is inside a magnetic field, the oscillating axion field acts as a source of electromagnetic waves, which emerge in both directions perpendicular to the surface. The emission rate can be boosted by multiple layers judiciously placed to achieve constructive interference and by a large transverse area. Starting from the axion-modified Maxwell equations, we calculate the efficiency of this new dielectric haloscope approach. This technique could potentially search the unexplored high-frequency range of 10--100 GHz (axion mass 40--400 $\mu$eV), where traditional cavity resonators have difficulties reaching the required volume.

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