arXiv:2101.11290·v1·Cosmology and Nongalactic Astrophysics
Constraints on the Coupling between Axionlike Dark Matter and Photons Using an Antiproton Superconducting Tuned Detection Circuit in a Cryogenic Penning Trap
Jack A. Devlin🇯🇵 · Matthias J. Borchert🇯🇵 · Stefan Erlewein🇯🇵 · Markus Fleck🇯🇵 · James A. Harrington🇯🇵 · Barbara Latacz🇯🇵 · Jan Warncke🇯🇵 · Elise Wursten🇯🇵 · Matthew A. Bohman🇯🇵 · Andreas H. Mooser🇯🇵 · Christian Smorra🇯🇵 · Markus Wiesinger🇯🇵
Abstract
We constrain the coupling between axionlike particles (ALPs) and photons, measured with the superconducting resonant detection circuit of a cryogenic Penning trap. By searching the noise spectrum of our fixed-frequency resonant circuit for peaks caused by dark matter ALPs converting into photons in the strong magnetic field of the Penning-trap magnet, we are able to constrain the coupling of ALPs with masses around to . This is more than one order of magnitude lower than the best laboratory haloscope and approximately 5 times lower than the CERN axion solar telescope (CAST), setting limits in a mass and coupling range which is not constrained by astrophysical observations. Our approach can be extended to many other Penning-trap experiments and has the potential to provide broad limits in the low ALP mass range.
Comments: 7 pages, 3 figures