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Atomic magnetometer with microfabricated vapor cells based on coherent population trapping

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【作者】 李晓杰史越薛洪波阮勇冯焱颖

【Author】 Xiaojie Li;Yue Shi;Hongbo Xue;Yong Ruan;Yanying Feng;State Key Laboratory of Precision Measurement Technology and Instrument, Tsinghua University;Key Laboratory of Photonic Control Technology (Ministry of Education), Tsinghua University;Department of Precision Instrument, Tsinghua University;State Key Laboratory of Space Weather, National Space Science Center, Chinese Academy of Sciences;MEMS Institute of Zibo National High-tech Industrial Development Zone;

【通讯作者】 阮勇;冯焱颖;

【机构】 State Key Laboratory of Precision Measurement Technology and Instrument, Tsinghua UniversityKey Laboratory of Photonic Control Technology (Ministry of Education), Tsinghua UniversityDepartment of Precision Instrument, Tsinghua UniversityState Key Laboratory of Space Weather, National Space Science Center, Chinese Academy of SciencesMEMS Institute of Zibo National High-tech Industrial Development Zone

【摘要】 An atomic magnetometer based on coherent population trapping(CPT) resonances in microfabricated vapor cells is demonstrated. Fabricated by the micro-electro-mechanical-system(MEMS) technology, the cells are filled with Rb and Ne at a controlled pressure. An experimental apparatus is built for characterizing properties of microfabricated vapor cells via the CPT effects. The typical CPT linewidth is measured to be about 3 k Hz(1.46 k Hz with approximately zero laser intensity) for the rubidium D1 line at about 90℃. The effects of pressure, temperature and laser intensity on CPT linewidth are studied experimentally. A closed-loop atomic magnetometer is finally finished with a sensitivity of 210.5 p T/Hz1/2 at 1 Hz bandwidth. This work paves the way for developing an integrated chip-scale atomic magnetometer in the future.

【Abstract】 An atomic magnetometer based on coherent population trapping(CPT) resonances in microfabricated vapor cells is demonstrated. Fabricated by the micro-electro-mechanical-system(MEMS) technology, the cells are filled with Rb and Ne at a controlled pressure. An experimental apparatus is built for characterizing properties of microfabricated vapor cells via the CPT effects. The typical CPT linewidth is measured to be about 3 k Hz(1.46 k Hz with approximately zero laser intensity) for the rubidium D1 line at about 90℃. The effects of pressure, temperature and laser intensity on CPT linewidth are studied experimentally. A closed-loop atomic magnetometer is finally finished with a sensitivity of 210.5 p T/Hz1/2 at 1 Hz bandwidth. This work paves the way for developing an integrated chip-scale atomic magnetometer in the future.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 61473166)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年03期
  • 【分类号】TM936;TP212
  • 【被引频次】1
  • 【下载频次】42
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