arXiv · 1912.00062
Manipulating cold atoms through a high-resolution compact system based on a multimode fiber
Abstract
To manipulate cold atoms in spatially constrained quantum engineering platforms, we developed a lensless optical system with a $\sim$1 $μ$m resolution and a transverse size of only 225 $μ$m. We use a multimode optical fiber with a high numerical aperture, which directly guides light inside the ultra-high-vacuum system. Spatial light modulators allow us to generate control beams at the in-vacuum fiber end by digital optical phase conjugation. As a demonstration, we use this system to optically transport cold atoms towards the in-vacuum fiber end, to load them in optical microtraps and to re-cool them in optical molasses. This work opens new perspectives for setups combining cold atoms with other optical, electronic or opto-mechanical systems with limited optical access.
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Nicolas Vitrant, Kilian Müller, Sébastien Garcia, Alexei Ourjoumtsev. 2019-11-29. Manipulating cold atoms through a high-resolution compact system based on a multimode fiber. https://doi.org/10.1364/ol.385857
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