Partial-Transfer Absorption Imaging: A versatile technique for optimal imaging of ultracold gases
Abstract
Partial-transfer absorption imaging is a tool that enables optimal imaging of atomic clouds for a wide range of optical depths. In contrast to standard absorption imaging, the technique can be minimally-destructive and can be used to obtain multiple successive images of the same sample. The technique involves transferring a small fraction of the sample from an initial internal atomic state to an auxiliary state and subsequently imaging that fraction absorptively on a cycling transition. The atoms remaining in the initial state are essentially unaffected. We demonstrate the technique, discuss its applicability, and compare its performance as a minimally-destructive technique to that of phase-contrast imaging.
Keywords
Cite
@article{arxiv.1206.7048,
title = {Partial-Transfer Absorption Imaging: A versatile technique for optimal imaging of ultracold gases},
author = {Anand Ramanathan and Sérgio R. Muniz and Kevin C. Wright and Russell P. Anderson and William D. Phillips and Kristian Helmerson and Gretchen K. Campbell},
journal= {arXiv preprint arXiv:1206.7048},
year = {2013}
}
Comments
10 pages, 5 figures, submitted to Review of Scientific Instruments