Development of an electric field application system with transparent electrodes towards the electron EDM measurement with laser-cooled Fr atoms
ORAL
Abstract
The permanent electric dipole moment (EDM) of elementary particles is a good probe for new physics beyond the standard model. Since the francium (Fr) atom has a large enhancement factor of the electron EDM and laser-cooled atoms can have long coherence times, we plan to utilize laser-cooled Fr atoms for the electron EDM search experiment. Besides, a strong electric field is one of key issues for the EDM experiment. Recently, we have embarked on a development of the electric field application system with transparent electrodes coated by tin-doped indium oxide (ITO). The ITO electrodes break the difficulty in the coexistence of electrodes with several cooling laser lights. The actual electric field applied to the atom is evaluated by measuring the dc Stark shift for the laser-cooled rubidium atoms. In this presentation, the present status of the electric field application system will be reported.
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Authors
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Taisuke Ishikawa
Tohoku University
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Shun Ando
Tohoku University
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Takahiro Aoki
Tohoku University
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Hiroshi Arikawa
Tohoku University
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Ken-ichi Harada
Tohoku University
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Tomohiro Hayamizu
Tohoku University
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Takeshi Inoue
Tohoku University
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Masatoshi Itoh
Tohoku University
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Hirokazu Kawamura
Tohoku University
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Ko Kato
Tohoku University
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Kosuke Sakamoto
Tohoku University
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Aiko Uchiyama
Tohoku University
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Yasuhiro Sakemi
Tohoku University