レーザー研究
Online ISSN : 1349-6603
Print ISSN : 0387-0200
ISSN-L : 0387-0200
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イッテルビウム原子の精密分光による新物理探索
高野 哲至小野 滉貴石山 泰樹砂賀 彩光山本 康裕田中 実高橋 義朗
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2023 年 51 巻 8 号 p. 511-

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Ultra-precise optical atomic clocks show promise as the next-generation frequency standard, as well as quantum sensors for exploring new physics beyond the standard model. This article reviews our attempts to search for new physics through precise spectroscopy of neutral ytterbium atoms. Neutral ytterbium atoms have multiple clock transitions and many stable isotopes, making them suitable for the search for new physics. By measuring the isotope shift of the 1S0 − 3P0 transition at the Hz level, we can observe the nonlinearity of the generalized King’s plot. Additionally, a new clock transition from the ground state to the metastable 4f 135d6s2 (J = 2) state, which was theoretically predicted, is directly observed, and investigations are carried out on its isotope shift, g factor, hyperfine structure, magic wavelength, and trap lifetime. These achievements open up the possibility of future new physics searches.
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