Cold-atom shaping with MEMS scanning mirrors

Bregazzi, Alan and Janin, Paul and Dyer, Sean and McGilligan, James P. and Burrow, Oliver and Riis, Erling and Uttamchandani, Deepak and Bauer, Ralf and Griffin, Paul F. (2022) Cold-atom shaping with MEMS scanning mirrors. Optics Letters, 48 (1). pp. 37-40. ISSN 0146-9592 (https://doi.org/10.1364/OL.475353)

[thumbnail of Bregazzi-etal-OL-2022-Cold-atom-shaping-with-MEMS-scanning-mirrors]
Preview
Text. Filename: Bregazzi_etal_OL_2022_Cold_atom_shaping_with_MEMS_scanning_mirrors.pdf
Final Published Version
License: Creative Commons Attribution 4.0 logo

Download (3MB)| Preview

Abstract

We demonstrate the integration of micro-electro-mechanical-systems (MEMS) scanning mirrors as active elements for the local optical pumping of ultra-cold atoms in a magneto-optical trap. A pair of MEMS mirrors steer a focused resonant beam through a cloud of trapped atoms shelved in the F = 1 ground-state of 87Rb for spatially selective fluorescence of the atom cloud. Two-dimensional control is demonstrated by forming geometrical patterns along the imaging axis of the cold atom ensemble. Such control of the atomic ensemble with a microfabricated mirror pair could find applications in single atom selection, local optical pumping, and arbitrary cloud shaping. This approach has significant potential for miniaturization and in creating portable control systems for quantum optic experiments.