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Axion dark matter detection by laser induced fluorescence in rare-earth doped materials

Academic Article
Publication Date:
2017
abstract:
We present a detection scheme to search for QCD axion dark matter, that is based on a direct interaction between axions and electrons explicitly predicted by DFSZ axion models. The local axion dark matter field shall drive transitions between Zeeman-split atomic levels separated by the axion rest mass energy mc. Axion-related excitations are then detected with an upconversion scheme involving a pump laser that converts the absorbed axion energy (~hundreds of ?eV) to visible or infrared photons, where single photon detection is an established technique. The proposed scheme involves rare-earth ions doped into solid-state crystalline materials, and the optical transitions take place between energy levels of 4f electron configuration. Beyond discussing theoretical aspects and requirements to achieve a cosmologically relevant sensitivity, especially in terms of spectroscopic material properties, we experimentally investigate backgrounds due to the pump laser at temperatures in the range 1.9 - 4.2 K. Our results rule out excitation of the upper Zeeman component of the ground state by laser-related heating effects, and are of some help in optimizing activated material parameters to suppress the multiphonon-assisted Stokes fluorescence.
Iris type:
01.01 Articolo in rivista
Keywords:
axion dark matter
List of contributors:
Maddaloni, Pasquale
Authors of the University:
MADDALONI PASQUALE
Handle:
https://iris.cnr.it/handle/20.500.14243/425070
Published in:
SCIENTIFIC REPORTS
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-85033800586&origin=inward
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