A Decommissioned LHC Model Magnet as an Axion Telescope
Abstract
The 8.4 Tesla, 10 m long transverse magnetic field of a twin aperture LHC bending magnet can be utilized as a macroscopic coherent solar axion-to-photon converter. Numerical calculations show that the integrated time of alignment with the Sun would be 33 days per year with the magnet on a tracking table capable of in the vertical direction and in the horizontal direction. The existing lower bound on the axion-to-photon coupling constant can be improved by a factor between 50 and 100 in 3 years, i.e., for axion masses 1 eV. This value falls within the existing open axion mass window. The same set-up can simultaneously search for low- and high-energy celestial axions, or axion-like particles, scanning the sky as the Earth rotates and orbits the Sun.
Keywords
Cite
@article{arxiv.astro-ph/9801176,
title = {A Decommissioned LHC Model Magnet as an Axion Telescope},
author = {K. Zioutas and C. E. Aalseth and D. Abriola and F. T. Avignone and R. L. Brodzinski and J. I. Collar and R. Creswick and D. E. Di Gregorio and H. Farach and A. O. Gattone and C. K. Guerard and F. Hasenbalg and M. Hasinoff and H. Huck and A. Liolios and H. S. Miley and A. Morales and J. Morales and D. Nikas and S. Nussinov and A. Ortiz and E. Savvidis and S. Scopel and P. Sievers and J. A. Villar and L. Walckiers},
journal= {arXiv preprint arXiv:astro-ph/9801176},
year = {2009}
}
Comments
Final version, accepted for publication in Nucl. Instr. Meth. A. More information can be found at http://wwwinfo.cern.ch/~collar/SATAN/alvaro.html