muCool: A novel low-energy muon beam for future precision experiments
Abstract
Experiments with muons () and muonium atoms () offer several promising possibilities for testing fundamental symmetries. Examples of such experiments include search for muon electric dipole moment, measurement of muon and experiments with muonium from laser spectroscopy to gravity experiments. These experiments require high quality muon beams with small transverse size and high intensity at low energy. At the Paul Scherrer Institute, Switzerland, we are developing a novel device that reduces the phase space of a standard beam by a factor of with efficiency. The phase space compression is achieved by stopping a standard beam in a cryogenic helium gas. The stopped are manipulated into a small spot with complex electric and magnetic fields in combination with gas density gradients. From here, the muons are extracted into the vacuum and into a field-free region. Various aspects of this compression scheme have been demonstrated. In this article the current status will be reported.
Keywords
Cite
@article{arxiv.1901.04886,
title = {muCool: A novel low-energy muon beam for future precision experiments},
author = {I. Belosevic and A. Antognini and Y. Bao and A. Eggenberger and M. Hildebrandt and R. Iwai and D. M. Kaplan and K. S. Khaw and K. Kirch and A. Knecht and A. Papa and C. Petitjean and T. J. Phillips and F. M. Piegsa and N. Ritjoho and A. Stoykov and D. Taqqu and G. Wichmann},
journal= {arXiv preprint arXiv:1901.04886},
year = {2020}
}
Comments
8 pages, 5 figures, TCP 2018 conference proceedings