2014arXiv (Cornell University)Open access

Power broadening effects on Electromagnetically Induced Transparency in $^{20}$Ne vapor

Boaz Lubotzky, David Shwa, Tao Kong, Nadav Katz, G. Ron

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Abstract

We report here the first observation of electromagnetically induced transparency (EIT) in $^{20}$Ne. The power broadening of the EIT linewidth is measured as a function of neon pressure and RF excitation power. Doppler effects on the EIT broadening are found even at low pressures and low intensities, where the linewidth should be governed only by homogeneous effects.

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We report here the first observation of electromagnetically induced transparency (EIT) in $^{20}$Ne. The power broadening of the EIT linewidth is measured as a function of neon pressure and RF excitation power. Doppler effects on the EIT broadening are found even at low pressures and low intensities, where the linewidth should be governed only by homogeneous effects.

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Available abstract

We report here the first observation of electromagnetically induced transparency (EIT) in $^{20}$Ne. The power broadening of the EIT linewidth is measured as a function of neon pressure and RF excitation power. Doppler effects on the EIT broadening are found even at low pressures and low intensities, where the linewidth should be governed only by homogeneous effects.

Key concepts: Laser linewidth, Electromagnetically induced transparency, Doppler broadening, Homogeneous broadening, Excitation, Doppler effect, Atomic physics, Materials science

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