Compact atom source using fiber-based pulsed laser ablation
arXiv:2302.07639 · doi:10.1063/5.0146658
Abstract
We designed, demonstrated, and characterized an atom source based on fiber-based pulsed laser ablation. By using commercially available miniature lens system for focusing nanosecond pulsed laser of up to 225~J delivered through a multimode fiber of 105~m core, we successfully ablate a SrTiO target and generate a jet of neutral strontium atoms, though our method can be applied to other transparent ablation targets containing materials under concern. Our device endures 6\,000 cycles of pulse delivery and irradiation without noticeable damage on the fiber facets and lenses. The generated strontium beam is characterized with spectroscopic method and is revealed to exhibit the transverse temperature of 800~K and longitudinal velocity of 2\,300~m/s, which are typical of pulsed-laser-ablation-based atom source. The number of atoms generated by a single ablation pulse is estimated to be . Our device provides a compact, cryo-compatible fiber-pigtailed atom source with minimized device footprints and reduced complexity of vacuum systems to further promote the developments of cold-atom experiments. It may also find interesting applications in atomic and molecular sciences.
4 pages, 3 figures
References in corpus (6)
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- An Al quantum-logic clock with systematic uncertainty below
- Laser ablation loading of a surface-electrode ion trap
- A compact and efficient strontium oven for laser-cooling experiments
- Laser ablation production of Ba, Ca, Dy, Er, La, Lu, and Yb ions
- Studies of thorium and ytterbium ion trap loading from laser ablation for gravity monitoring with nuclear clocks