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Flexible control of semiconductor laser with frequency tunable modulation transfer spectroscopy

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【作者】 茹宁王宇马慧娟胡栋张力樊尚春

【Author】 Ning Ru;Yu Wang;Hui-Juan Ma;Dong Hu;Li Zhang;Shang-Chun Fan;School of Instrumentation Science and Opto-electronics Engineering, Beihang University;Key Laboratory for Metrology, Changcheng Institute of Metrology and Measurement;

【机构】 School of Instrumentation Science and Opto-electronics Engineering, Beihang UniversityKey Laboratory for Metrology, Changcheng Institute of Metrology and Measurement

【摘要】 We introduce a new method of simultaneously implementing frequency stabilization and frequency shift for semiconductor lasers. We name this method the frequency tunable modulation transfer spectroscopy(FTMTS). To realize a stable output of 780 nm semiconductor laser, an FTMTS optical heterodyne frequency stabilization system is constructed. Before entering into the frequency stabilization system, the probe laser passes through an acousto-optical modulator(AOM) twice in advance to achieve tunable frequency while keeping the light path stable. According to the experimental results, the frequency changes from 120 MHz to 190 MHz after the double-pass AOM, and the intensity of laser entering into the system is greatly changed, but there is almost no change in the error signal of the FTMTS spectrum. Using this signal to lock the laser frequency, we can ensure that the frequency of the laser changes with the amount of AOM shift. Therefore,the magneto-optical trap(MOT)-molasses process can be implemented smoothly.

【Abstract】 We introduce a new method of simultaneously implementing frequency stabilization and frequency shift for semiconductor lasers. We name this method the frequency tunable modulation transfer spectroscopy(FTMTS). To realize a stable output of 780 nm semiconductor laser, an FTMTS optical heterodyne frequency stabilization system is constructed. Before entering into the frequency stabilization system, the probe laser passes through an acousto-optical modulator(AOM) twice in advance to achieve tunable frequency while keeping the light path stable. According to the experimental results, the frequency changes from 120 MHz to 190 MHz after the double-pass AOM, and the intensity of laser entering into the system is greatly changed, but there is almost no change in the error signal of the FTMTS spectrum. Using this signal to lock the laser frequency, we can ensure that the frequency of the laser changes with the amount of AOM shift. Therefore,the magneto-optical trap(MOT)-molasses process can be implemented smoothly.

【基金】 Project supported by the National Key Scientific Instrument and Equipment Development Project,China(Grant No.2014YQ35046103)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2018年07期
  • 【分类号】TN248.4
  • 【被引频次】3
  • 【下载频次】43
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