English

First Results from ABRACADABRA-10 cm: A Search for Sub-$\mu$eV Axion Dark Matter

High Energy Physics - Experiment 2019-04-03 v2 Instrumentation and Detectors

Abstract

The axion is a promising dark matter candidate, which was originally proposed to solve the strong-CP problem in particle physics. To date, the available parameter space for axion and axion-like particle dark matter is relatively unexplored, particularly at masses ma1μm_a\lesssim1\,\mueV. ABRACADABRA is a new experimental program to search for axion dark matter over a broad range of masses, 1012ma10610^{-12}\lesssim m_a\lesssim10^{-6} eV. ABRACADABRA-10 cm is a small-scale prototype for a future detector that could be sensitive to the QCD axion. In this Letter, we present the first results from a 1 month search for axions with ABRACADABRA-10 cm. We find no evidence for axion-like cosmic dark matter and set 95% C.L. upper limits on the axion-photon coupling between gaγγ<1.4×1010g_{a\gamma\gamma}<1.4\times10^{-10} GeV1^{-1} and gaγγ<3.3×109g_{a\gamma\gamma}<3.3\times10^{-9} GeV1^{-1} over the mass range 3.1×10103.1\times10^{-10} eV - 8.3×1098.3\times10^{-9} eV. These results are competitive with the most stringent astrophysical constraints in this mass range.

Keywords

Cite

@article{arxiv.1810.12257,
  title  = {First Results from ABRACADABRA-10 cm: A Search for Sub-$\mu$eV Axion Dark Matter},
  author = {Jonathan L. Ouellet and Chiara P. Salemi and Joshua W. Foster and Reyco Henning and Zachary Bogorad and Janet M. Conrad and Joseph A. Formaggio and Yonatan Kahn and Joe Minervini and Alexey Radovinsky and Nicholas L. Rodd and Benjamin R. Safdi and Jesse Thaler and Daniel Winklehner and Lindley Winslow},
  journal= {arXiv preprint arXiv:1810.12257},
  year   = {2019}
}

Comments

7 pages, 3 Figures. Submitted to PRL