A Portable, Compact Cold Atom Physics Package for Atom Interferometry
Michael J. Mazon, G. Iyanu, He Wang
Abstract
Michael J. Mazon, G. Iyanu, He Wang
Abstract
In this paper, we report the design, implementation and experimental results of a portable, compact cold Cs atom physics package for atom interferometer experiments. With the physics package, we trapped and deep-cooled Cs atoms to ultracold temperatures of <; 5 μK. The deep-cooling method used in this work is relatively simple and effective, with which we obtained controlled temperature adjustment between 5 and 80 μK. The portability of the physics package makes it suitable for implementing atom interferometry with various interrogation configurations and relative orientations. The system is also good for studies of compact cold atom frequency standards. With the Raman laser and light pulse manipulation system we developed in this work, this portable cold Cs atom physics package is being used for atom interferometer experiments in our laboratory.
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In this paper, we report the design, implementation and experimental results of a portable, compact cold Cs atom physics package for atom interferometer experiments. With the physics package, we trapped and deep-cooled Cs atoms to ultracold temperatures of <; 5 μK. The deep-cooling method used in this work is relatively simple and effective, with which we obtained controlled temperature adjustment between 5 and 80 μK. The portability of the physics package makes it suitable for implementing atom interferometry with various interrogation configurations and relative orientations. The system is also good for studies of compact cold atom frequency standards. With the Raman laser and light pulse manipulation system we developed in this work, this portable cold Cs atom physics package is being used for atom interferometer experiments in our laboratory.
Key concepts: Atom interferometer, Ultracold atom, Interferometry, Atom (system on chip), Atom optics, Software portability, Physics, Applied physics