arXiv · 2404.19670
Magnetic trapping of an ultracold $^{39}$K-$^{40}$K mixture with a versatile potassium laser system
Abstract
We present a dual isotope magneto-optical trap (MOT), simultaneous sub-Doppler laser cooling, and magnetic trapping of a spin-polarized $^{39}$K-$^{40}$K Bose-Fermi mixture realized in a single-chamber setup with an unenriched potassium dispenser as the source of atoms. We are able to magnetically confine more than $2.2\times10^5$ fermions ($F=9/2\,m_F=9/2$) and $1.4\times10^7$ bosons ($F=2\,m_F=2$) with a lifetime exceeding 1.2 s. For this work, we have developed a versatile laser tailored for sub-Doppler cooling of all naturally occurring potassium isotopes and their mixtures. This laser system incorporates innovative features, such as the capability to select an isotope by activating or deactivating specific acousto-optic modulators that control the light seeding tapered amplifiers. Switching between isotopes takes $\sim$1 $\mathrm{\mu}$s without any mechanical adjustment of the components. As a final step in characterizing the laser system, we demonstrate sub-Doppler cooling of $^{41}$K.
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Mateusz Bocheński, Jakub Dobosz, Mariusz Semczuk. 2024-04-30. Magnetic trapping of an ultracold $^{39}$K-$^{40}$K mixture with a versatile potassium laser system. https://arxiv.org/abs/2404.19670
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