A high-stability semiconductor laser system for a Sr-88-based optical lattice clock

作者:Tarallo M G; Poli N; Schioppo M; Sutyrin D; Tino G M*
来源:Applied Physics B: Lasers and Optics , 2011, 103(1): 17-25.
DOI:10.1007/s00340-010-4232-2

摘要

We describe a frequency-stabilized diode laser at 698 nm used for high-resolution spectroscopy of the S-1(0)-P-3(0) strontium clock transition. For the laser stabilization we use state-of-the-art symmetrically suspended optical cavities optimized for very low thermal noise at room temperature. Two-stage frequency stabilization to high-finesse optical cavities results in measured laser frequency noise about a factor of three above the cavity thermal noise between 2 Hz and 11 Hz. With this system, we demonstrate high-resolution remote spectroscopy on the Sr-88 clock transition by transferring the laser output over a phase noise-compensated 200-m-long fiber link between two separated laboratories. Our dedicated fiber link ensures a transfer of the optical carrier with frequency stability of 7x10(-18) after 100 s integration time, which could enable the observation of the strontium clock transition with an atomic Q of 10(14). Furthermore, with an eye toward the development of transportable optical clocks, we investigate how the complete laser system (laser+optics+cavity) can be influenced by environmental disturbances in terms of both short- and long-term frequency stability.

  • 出版日期2011-4