Current progress in laser cooling of antihydrogen
Abstract
We discuss laser cooling methods of (anti)hydrogen and its importance for current and future experiments. The exploration of antimatter presents a great interest for and experiments aimed at check of quantum mechanics laws, fundamental symmetries of nature and gravity and investigations in atomic and nuclear physics. The spectral transition in atom is the most suitable for laser cooling due to a small lifetime of state and insignificant ionization losses. However the pulsed and continuous laser sources at Lyman- wavelength do not possess enough power for fast and efficient cooling. The small power of laser sources at is poor technical problem associated with a complexity of generation scheme of such radiation, which arises due to absence of nonlinear crystals at this wavelength. The advances in this area will completely destine the future progress of the experiments aimed at study of antimatter.
Cite
@article{arxiv.1406.7521,
title = {Current progress in laser cooling of antihydrogen},
author = {E. V. Luschevskaya and A. A. Golubev},
journal= {arXiv preprint arXiv:1406.7521},
year = {2015}
}
Comments
22 pages, 16 figures