Laser-cooled HgF as a promising candidate to measure the electric dipole moment of the electron
Laser-cooled HgF as a promising candidate to measure the electric dipole moment of the electron
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激光冷却 HgF 作为测量电子电偶极矩的有前途的候选者
DOI:
10.1103/physreva.99.032502
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发表时间:
2018-11
影响因子:
2.9
通讯作者:
Yin Jianping
中科院分区:
文献类型:
--
作者:
Yang Zhenghai;Li Jing;Lin Qinning;Xu Liang;Wang Hailing;Yang Tao;Yin Jianping
In order to realize more sensitive eEDM measurement, it would be worthwhile to find some new laser-cooled molecules with larger internal effective electric field (E$_{eff}$), higher electric polarizability and longer lifetime of the eEDM measurement state. Here we explore the merits of mercuric monofluoride ($^{202}Hg^{19}F$, X$^ 2 {\Sigma}_{1/2}$) for its potential of laser cooling and eEDM measurement. We theoretically investigated the electronic, rovibrational and hyperfine structures and verified the highly diagonal Franck-Condon factors (FCFs) of the main transitions by the Rydberg-Klein-Rees inversion (RKR) method and the Morse approximation. Hyperfine manifolds of the X$^ 2 {\Sigma}_{1/2} (\nu=0$) rotational states were examined with the effective Hamiltonian approach and a feasible sideband modulation scheme was proposed. In order to enhance optical cycling, the microwave remixing method was employed to address all the necessary levels. The Zeeman effect and the hyperfine structure magnetic g factors of the X$^ 2 {\Sigma}_{1/2} (\nu=0$,$\mathit{ N } $=1) state were studied subsequently. Finally, its statistical sensitivities for the eEDM measurement were estimated respectively to be about $9\times 10^{-31} e\bullet cm $ (the laser cooled transverse beam experiment), $2\times 10^{-31} e\bullet cm$ (the fountain experiment) and $1\times 10^{-32}$ e\bullet cm (experiment with trapped cold molecules), indicating that $^{202}Hg^{19}F$ might be another promising eEDM candidate when compared with the most recent ThO result of $d_{ e } = (4.3 \pm 3.1_{ stat } \pm 2.6_{ syst })\times 10^{-30} e\bullet cm$ (Nature, 562, 355 (2018)). In addition, the possibility of direct Stark decelerating of the HgF radical was also discussed.
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影响因子:
3.3
作者:
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通讯作者:
M. Tarbutt
影响因子:
19.6
作者:
S. Truppe;H. Williams;M. Hambach;L. Caldwell;N. Fitch;E. Hinds;B. Sauer;M. Tarbutt
通讯作者:
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64.8
作者:
Barry, J. F.;McCarron, D. J.;DeMille, D.
通讯作者:
DeMille, D.
影响因子:
2.9
作者:
J. Lee;J. Chen;L. Skripnikov;A. Petrov;A. Titov;N. Mosyagin;A. Leanhardt
通讯作者:
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