Interferometry in an Atomic Fountain with Ytterbium Bose-Einstein Condensates
arXiv:2107.09117 · doi:10.3390/atoms9030058
Abstract
We present enabling experimental tools and atom interferometer implementations in a vertical "fountain" geometry with ytterbium Bose-Einstein condensates. To meet the unique challenge of the heavy, non-magnetic atom, we apply a shaped optical potential to balance against gravity following evaporative cooling and demonstrate a double Mach-Zehnder interferometer suitable for applications such as gravity gradient measurements. Furthermore, we also investigate the use of a pulsed optical potential to act as a matter wave lens in the vertical direction during expansion of the Bose-Einstein condensate. This method is shown to be even more effective and results in a reduction of velocity spread (or equivalently an increase in source brightness) of more than a factor of five, which we demonstrate using a two-pulse momentum-space Ramsey interferometer. The vertical geometry implementation of our diffraction beams ensures that the atomic center of mass maintains overlap with the pulsed atom optical elements, thus allowing extension of atom interferometer times beyond what is possible in a horizontal geometry. Our results thus provide useful tools for enhancing the precision of atom interferometry with ultracold ytterbium atoms.
11 pages, 7 figures
References in corpus (15)
- Measurement of the fine-structure constant as a test of the Standard Model
- New determination of the fine structure constant and test of the quantum electrodynamics
- A one-dimensional liquid of fermions with tunable spin
- Interferometry with Bose-Einstein Condensates in Microgravity
- Observation of two-orbital spin-exchange interactions with ultracold SU(N)-symmetric fermions
- Quantum Test of the Universality of Free Fall
- Matter wave lensing to picokelvin temperatures
- Atom interferometry with the Sr optical clock transition
- Large Momentum Transfer Clock Atom Interferometry on the 689 nm Intercombination Line of Strontium
- Atom interferometry gravity-gradiometer for the determination of the Newtonian gravitational constant G
- Testing the universality of free fall with rubidium and ytterbium in a very large baseline atom interferometer
- Noise-Immune Conjugate Large-Area Atom Interferometers
- Advances in precision contrast interferometry with Yb Bose-Einstein condensates
- Entanglement of group-II-like atoms with fast measurement for quantum information processing
- Observation of Many-body Dynamical Delocalization in a Kicked Ultracold Gas
Cited by in corpus (6)
- All-Optical Matter-Wave Lens using Time-Averaged Potentials
- Proposal for a long-lived quantum memory using matter-wave optics with Bose-Einstein condensates in microgravity
- Bloch Oscillation Phases investigated by Multi-path Stuckelberg Atom Interferometry
- Matter-wave collimation to picokelvin energies with scattering length and potential shape control
- Intercombination line frequencies in Yb validated with the clock transition
- Ytterbium atom interferometry for dark matter searches