Atom-Number Enhancement by Shielding Atoms from Losses in Strontium Magneto-Optical Traps
arXiv:2302.02992 · doi:10.1103/PhysRevApplied.19.064011
Abstract
We present a scheme to enhance the atom number in magneto-optical traps of strontium atoms operating on the 461 nm transition. This scheme consists of resonantly driving the SP intercombination line at 689 nm, which continuously populates a short-lived reservoir state and, as expected from a theoretical model, partially shields the atomic cloud from losses arising in the 461 nm cooling cycle. We show a factor of two enhancement in the atom number for the bosonic isotopes Sr and Sr, and the fermionic isotope Sr, in good agreement with our model. Our scheme can be applied in the majority of strontium experiments without increasing the experimental complexity of the apparatus, since the employed 689 nm transition is commonly used for further cooling. Our method should thus be beneficial to a broad range of quantum science and technology applications exploiting cold strontium atoms, and could be extended to other atomic species.
10 pages, 6 figures, 4 tables. Accepted version
References in corpus (22)
- Systematic evaluation of an atomic clock at 2e-18 total uncertainty
- Tools for quantum simulation with ultracold atoms in optical lattices
- Resolving the gravitational redshift within a millimeter atomic sample
- Long-lived Bloch oscillations with bosonic Sr atoms and application to gravity measurement at micrometer scale
- Trapping of Neutral Mercury Atoms and Prospects for Optical Lattice Clocks
- Bose-Einstein condensation of alkaline earth atoms: {Ca}
- Atom interferometry with the Sr optical clock transition
- Assembly and coherent control of a register of nuclear spin qubits
- Long-lived Bell states in an array of optical clock qubits
- Two-photon photoassociative spectroscopy of ultracold 88-Sr
- Magneto-Optical Trap for Thulium Atoms
- Continuous Bose-Einstein condensation
- Laser cooling for quantum gases
- Fourier-transform spectroscopy of Sr2 and revised ground state potential
- Cooling and trapping of ultra-cold strontium isotopic mixtures
- A compact and efficient strontium oven for laser-cooling experiments
- Magneto-optical Trapping of Cadmium
- Reservoir spectroscopy of 5s5p P - 5sd D transitions in strontium
- Observation of a narrow inner-shell orbital transition in atomic erbium at 1299 nm
- Optically guided atom interferometer tuned to magic wavelength
- Novel repumping on PD for Sr magneto-optical trap and Landé g factor measurement of D
- Jet-Loaded Cold Atomic Beam Source for Strontium