Production of a highly degenerate Fermi gas of metastable helium-3 atoms
arXiv:2211.07111 · doi:10.1103/PhysRevA.107.033313
Abstract
We report on the achievement of quantum degeneracy in both components of a Bose-Fermi mixture of metastable helium atoms, He* and He*. Degeneracy is achieved via Doppler cooling and forced evaporation for He*, and sympathetically cooling He* with He*. We discuss our simplified implementation, along with the high versatility of our system. This technique is able to produce a degenerate Fermi gas with a minimum reduced temperature of , consisting of He* atoms. Due to the high internal energy of both isotopes single atom detection is possible, opening the possibility of a large number of experiments into Bose-Fermi mixtures.
13 pages, 8 figures
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- Emergent s-wave interactions between identical fermions in quasi-one-dimensional geometries
- -body anti-bunching in a degenerate Fermi gas of He* atoms
- Measurement of the -wave scattering length between metastable helium isotopes
- Quantum science with arrays of metastable helium-3 atoms
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- Pulse Breathing Dynamics in a Mode-Locked Laser measured via SHG autocorrelation