Prospects for a bad cavity laser using a large ion crystal
Abstract
We propose to build a bad cavity laser using forbidden transitions in large ensembles of cold ions that form a Coulomb crystal in a linear Paul trap. This laser might realize an active optical frequency standard able to serve as a local oscillator in next-generation optical clock schemes. In passive optical clocks, large ensembles of ions appear less promising, as they suffer from inhomogeneous broadening due to quadrupole interactions and micromotion-relates shifts. In bad cavity lasers however, the radiating dipoles can synchronize and generate stable and narrow-linewidth radiation. Furthermore, for specific ions, micromotion-induced shifts can be largely suppressed by operating the ion trap at a magic frequency. We discuss the output radiation properties and perform quantitative estimations for lasing on the transition in ions in a spherically-symmetric trap.
Cite
@article{arxiv.1704.08318,
title = {Prospects for a bad cavity laser using a large ion crystal},
author = {Georgy A. Kazakov and Justin Bohnet and Thorsten Schumm},
journal= {arXiv preprint arXiv:1704.08318},
year = {2017}
}
Comments
14 pages, 6 figures