Paper
11 January 2005 Power broadening of electromagnetically induced transparence resonance
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Abstract
The width of an electromagnetically induced transparency (EIT) resonance is studied theoretically for an ideal three-level system in a L-type configuration. The optical Bloch equations are solved and the power broadening behavior of the EIT resonance is studied as a function of both couple and probe laser intensities over a broad range. It is shown that at relative low couple laser intensity there is a quadratic dependence of the EIT width on the couple laser Rabi frequency and at large couple laser intensity the EIT resonance evolve into the well known dynamic Stark splitting and its width has a linear dependence on the couple Rabi frequency. The dependence of the EIT width on the probe laser intensity shows different characteristics with the dependence on the couple laser intensity. Furthermore, the probe laser causes saturation and this is also discussed in this paper.
© (2005) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Lijun Yang, Lian-Shui Zhang, Xiao-li Li, Xiaomin Feng, Guangsheng Fu, and Li Han "Power broadening of electromagnetically induced transparence resonance", Proc. SPIE 5631, Quantum Optics and Applications in Computing and Communications II, (11 January 2005); https://doi.org/10.1117/12.574749
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Cited by 5 scholarly publications.
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KEYWORDS
Laser beam diagnostics

Absorption

Transparency

Doppler effect

Solid state physics

Physics

Laser spectroscopy

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