A two-frequency acousto-optic modulator driver to improve the beam pointing stability during intensity ramps
Abstract
We report on a scheme to improve the pointing stability of the first order beam diffracted by an acousto-optic modulator (AOM). Due to thermal effects inside the crystal, the angular position of the beam can change by as much as 1 mrad when the radio-frequency power in the AOM is reduced to decrease the first order beam intensity. This is done for example to perform forced evaporative cooling in ultracold atom experiments using far-off-resonant optical traps. We solve this problem by driving the AOM with two radio-frequencies and . The power of is adjusted relative to the power of to keep the total power constant. Using this, the beam displacement is decreased by a factor of twenty. The method is simple to implement in existing experimental setups, without any modification of the optics.
Cite
@article{arxiv.physics/0701183,
title = {A two-frequency acousto-optic modulator driver to improve the beam pointing stability during intensity ramps},
author = {B. Fröhlich and T. Lahaye and B. Kaltenhäuser and H. Kübler and S. Müller and T. Koch and M. Fattori and T. Pfau},
journal= {arXiv preprint arXiv:physics/0701183},
year = {2007}
}
Comments
Submitted to Review of Scientific Instruments, 4 pages