Determining hyperfine transitions with electromagnetically induced transparency and optical pumping
Yi-Chi Lee, Chin‐Chun Tsai, Yung-Yung Chang, Chen-Han Huang, Hsiang‐Chen Chui
Abstract
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Yi-Chi Lee, Chin‐Chun Tsai, Yung-Yung Chang, Chen-Han Huang, Hsiang‐Chen Chui
Abstract
Open-access reader
A system is designed to observe the phenomena of electromagnetically induced transparency and optical pumping in cesium D 1 and D 2 lines at room temperature. When a pump laser is frequency-locked on the top of a hyperfine transition and the frequency of the probe laser scans over another hyperfine transition, a spectrum of V-type electromagnetically induced transparency or an optical pumping can be observed depending on whether the two lasers share a common ground state. Therefore, these results can be used to identify the unknown hyperfine transitions of the D 1 line transitions. For educational purposes, this system is helpful for understanding the electromagnetically induced transparency and the optical pumping.
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A system is designed to observe the phenomena of electromagnetically induced transparency and optical pumping in cesium D 1 and D 2 lines at room temperature. When a pump laser is frequency-locked on the top of a hyperfine transition and the frequency of the probe laser scans over another hyperfine transition, a spectrum of V-type electromagnetically induced transparency or an optical pumping can be observed depending on whether the two lasers share a common ground state. Therefore, these results can be used to identify the unknown hyperfine transitions of the D 1 line transitions. For educational purposes, this system is helpful for understanding the electromagnetically induced transparency and the optical pumping.
Key concepts: Hyperfine structure, Electromagnetically induced transparency, Atomic physics, Laser, Ground state, Optical pumping, Transparency (behavior), Physics