Design and simulation of a source of cold cadmium for atom interferometry

Author:

Bandarupally SatvikaORCID,Tinsley Jonathan NORCID,Chiarotti MauroORCID,Poli NicolaORCID

Abstract

Abstract We present a novel optimised design for a source of cold atomic cadmium, compatible with continuous operation and potentially quantum degenerate gas production. The design is based on spatially segmenting the first and second-stages of cooling with the strong dipole-allowed 1S0-1P1 transition at 229 nm and the 326 nm 1S0-3P1 intercombination transition, respectively. Cooling at 229 nm operates on an effusive atomic beam and takes the form of a compact Zeeman slower (∼5 cm) and two-dimensional magneto-optical trap (MOT), both based on permanent magnets. This design allows for reduced interaction time with the photoionising 229 nm photons and produces a slow beam of atoms that can be directly loaded into a three-dimensional MOT using the intercombination transition. The efficiency of the above process is estimated across a broad range of experimentally feasible parameters via use of a Monte Carlo simulation, with loading rates up to 108 atoms s−1 into the 326 nm MOT possible with the oven at only 100 C. The prospects for further cooling in a far-off-resonance optical-dipole trap and atomic launching in a moving optical lattice are also analysed, especially with reference to the deployment in a proposed dual-species cadmium-strontium atom interferometer.

Funder

H2020 European Research Council

HORIZON EUROPE Digital, Industry and Space

Publisher

IOP Publishing

Subject

Condensed Matter Physics,Atomic and Molecular Physics, and Optics

Reference83 articles.

1. Laser cooling for quantum gases;Schreck;Nat. Phys.,2021

2. Optical atomic clocks;Poli;Riv. Nuovo Cimento,2013

3. Search for new physics with atoms and molecules;Safronova;Rev. Mod. Phys.,2018

4. Narrow-line cooling and determination of the magic wavelength of Cd;Yamaguchi;Phys. Rev. Lett.,2019

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. High flux strontium atom source;Quantum Science and Technology;2024-03-19

2. Toward a dual-species atom interferometer with cadmium and strontium;AVS Quantum Science;2024-03-01

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