English

Axion Search with Q & A Experiment

Instrumentation and Detectors 2010-05-27 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Experiment

Abstract

Dark matter is a focused issue in galactic evolution and cosmology. Axion is a viable particle candidate for dark matter. Its interaction with photon is an effective way to detect it, e.g., pseudoscalar-photon interaction will generate vacuum dichroism in a magnetic field. Motivated to measure the QED vacuum birefringence and to detect pseudoscalar-photon interaction, we started to build up the Q & A experiment (QED [Quantum Electrodynamics] and Axion experiment) in 1994. In this talk, we first give a brief historical account of planet hunting and dark matter evidence. We then review our 3.5 m Fabry-Perot interferometer together with our results of measuring vacuum dichroism and gaseous Cotton-Mouton effects. Our first results give (-0.2 ±\pm 2.8) ×\times 1013^{-13} rad/pass, at 2.3 T with 18,700 passes through a 0.6 m long magnet, for vacuum dichroism measurement. We are upgrading our interferometer to 7 m arm-length with a new 1.8 m 2.3 T permanent magnet capable of rotation up to 13 cycles per second. We aim at 10 nrad/Hz1/2^{1/2} optical sensitivity with 532 nm cavity finesse around 100,000. When achieved, vacuum dichroism would be measured to 8.6 ×\times 1017^{-17} rad/pass in about 50 days, and QED birefringence would be measured to 28 %.

Keywords

Cite

@article{arxiv.1001.4325,
  title  = {Axion Search with Q & A Experiment},
  author = {Hsien-Hao Mei and Wei-Tou Ni and Sheng-Jui Chen and Sheau-shi Pan},
  journal= {arXiv preprint arXiv:1001.4325},
  year   = {2010}
}

Comments

10 pages, 3 tables and 3 figures, presented in the International Workshop on Dark Matter, Dark Energy and Matter-Antimatter Asymmetry (Hsinchu, Taiwan, Nov. 20-21 2009); submitted to Modern Physics Letters. Rev. 2 is replaced for other collaborations' status/new-result corrections in Table 2, and 2 ref.s are added

R2 v1 2026-06-21T14:38:48.174Z