Optical and magnetic properties of a transparent garnet film for atomic physics experiments

Mari Saito, Ryoichi Tajima, Ryota Kiyosawa,Yugo Nagata,Hiroyuki Shimada,Takayuki Ishibashi,A. Hatakeyama

AIP ADVANCES(2016)

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摘要
We investigated the optical and magnetic properties of a transparent magnetic garnet with a particular focus on its applications to atomic physics experiments. The garnet film used in this study was a magnetically soft material that was originally designed for a Faraday rotator at optical communication wavelengths in the near infrared region. The film had a thickness of 2.1 mu m and a small optical loss at a wavelength of lambda = 780 nm resonant with Rb atoms. The Faraday effect was also small and, thus, barely affected the polarization of light at lambda = 780 nm. In contrast, large Faraday rotation angles at shorter wavelengths enabled us to visualize magnetic domains, which were perpendicularly magnetized in alternate directions with a period of 3.6 mu m. We confirmed the generation of an evanescent wave on the garnet film, which can be used for the optical observation and manipulation of atoms on the surface of the film. Finally, we demonstrated a magnetic mirror for laser-cooled Rb atoms using the garnet film. (C) 2016 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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