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Isotope-Shift Measurement of Bosonic Yb^(+)Ions

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摘要 We present a method that the atomic transition frequency measurement relies on the accurate wavemeter,optical frequency comb and stable Fabry–Pérot cavity to precise determination of stable even isotope shift on single Yb+ion(A=168,170,172,174,176).The 6s^(2)S_(1/2)←→6p^(2)P_(1/2)and 5d^(2)D_(3/2)←→6s^(3)[3/2]_(1/2)resonance dipole transition frequencies are preliminarily measured by using a wavemeter which is calibrated by the 729 nm clock laser of ^(40)Ca^(+).Meanwhile,those frequencies are double checked by using optical frequency comb for correction of deviation.Ultimately,by changing frequency locking points at an ultralow expansion cavity more slightly and monitoring the corresponding atomic fluorescence changing with 17%,we finally improve the resonant frequency uncertainty to±6 MHz,which is one order of improvement in precision higher than previously published measurements on the same transitions.A King-plot analysis with sensitivity to coupling between electrons and neutrons is carried out to determine the field and mass shift constants.Our measurement combined with existing or future isotope shift measurements can be used to determine basic properties of atomic nuclei,and to test new forces beyond the Standard Model.
作者 乐虹伶 邵虎 陈正 方鹏程 曾孟彦 张宝林 黄垚 李冀光 陈群峰 管桦 高克林 Hong-Ling Yue;Hu Shao;Zheng Chen;Peng-Cheng Fang;Meng-Yan Zeng;Bao-Lin Zhang;Yao Huang;Ji-Guang Li;Qun-Feng Chen;Hua Guan;Ke-Lin Gao(State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics,Innovation Academy of Precision Measurement Science and Technology,Chinese Academy of Sciences,Wuhan 430071,China;University of the Chinese Academy of Sciences,Beijing 100049,China;Key Laboratory of Atomic Frequency Standards,Innovation Academy of Precision Measurement Science and Technology,Chinese Academy of Sciences,Wuhan 430071,China;Institute of Applied Physics and Computational Mathematics,Beijing 100088,China;Hefei National Research Center for Physical Sciences at the Microscale and School of Physical Sciences,University of Science and Technology of China,Hefei 230026,China;CAS Center for Excellence in Quantum Information and Quantum Physics,University of Science and Technology of China,Hefei 230026,China;Wuhan Institute of Quantum Technology,Wuhan 430206,China)
出处 《Chinese Physics Letters》 SCIE EI CAS CSCD 2023年第9期43-47,共5页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China(Grant Nos.12204491 and 12121004) the National Basic Research Program of China(Grant No.2021YFF0603801) Wuhan Young Talent Program(Grant No.R22H000106) the Natural Science Foundation of Hubei Province(Grant No.2022CFA013) the CAS Youth Innovation Promotion Association(Grant Nos.Y201963 and 2018364) CAS Project for Young Scientists in Basic Research(Grant No.YSBR-055)。
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