Dark matter Axion search with riNg Cavity Experiment (DANCE) was proposed. To search for axion-like particles, we aim to detect the rotation and oscillation of optical linear polarization caused by axion-photon coupling with a bow-tie cavity. DANCE can improve the sensitivity to axion-photon coupling constant gaγ for axion mass ma<10−10eV by several orders of magnitude compared to the best upper limits at present. A prototype experiment DANCE Act-1 is in progress to demonstrate the feasibility of the method and to investigate technical noises. We assembled the optics, evaluated the performance of the cavity, and estimated the current sensitivity. If we observe for a year, we can reach gaγ≃9×10−7GeV−1 at ma≃10−13eV. The current sensitivity was believed to be limited by laser intensity noise at low frequencies and by mechanical vibration at high frequencies.
@article{arxiv.2105.06252,
title = {Dark matter Axion search with riNg Cavity Experiment DANCE: Current sensitivity},
author = {Yuka Oshima and Hiroki Fujimoto and Masaki Ando and Tomohiro Fujita and Yuta Michimura and Koji Nagano and Ippei Obata and Taihei Watanabe},
journal= {arXiv preprint arXiv:2105.06252},
year = {2021}
}
Comments
4 pages, 2 figures, contribution to the 2021 Gravitation session of the 55th Rencontres de Moriond, added references