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Degenerate cascade fluorescence: Optical spectral-line narrowing via a single microwave cavity

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【作者】 胡亮胡响明胡庆平

【Author】 Liang Hu;Xiang-Ming Hu;Qing-Ping Hu;College of Physical Science and Technology, Central China Normal University;

【通讯作者】 胡响明;

【机构】 College of Physical Science and Technology, Central China Normal University

【摘要】 For a three-level atom, two nondegenerate(even microwave and optical) electric dipole transitions are usually allowed; for either of these, the fluorescence spectra are well-described in terms of spontaneous transitions from a triplet of dressed sublevels to an adjacent lower-lying triplet. When the three dressed sublevels are equally spaced from each other, a remarkable feature known as degenerate cascade fluorescence takes place, which displays a five-peaked structure. We show that a single cavity can make all the spectral lines extremely narrow, whether they arise from cavity-coupled or cavity-free transitions. This effect is based on intrinsic cascade lasing feedback and makes it possible to use a single microwave cavity(even a bad cavity) to narrow the spectral lines in the optical frequency regime.

【Abstract】 For a three-level atom, two nondegenerate(even microwave and optical) electric dipole transitions are usually allowed; for either of these, the fluorescence spectra are well-described in terms of spontaneous transitions from a triplet of dressed sublevels to an adjacent lower-lying triplet. When the three dressed sublevels are equally spaced from each other, a remarkable feature known as degenerate cascade fluorescence takes place, which displays a five-peaked structure. We show that a single cavity can make all the spectral lines extremely narrow, whether they arise from cavity-coupled or cavity-free transitions. This effect is based on intrinsic cascade lasing feedback and makes it possible to use a single microwave cavity(even a bad cavity) to narrow the spectral lines in the optical frequency regime.

【基金】 supported by the National Natural Science Foundation of China (Grants Nos. 61875067 and 61178021)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年06期
  • 【分类号】O562
  • 【下载频次】23
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