Nuclear Spin Quenching of the S21/2→F27/2 Electric Octupole Transition in Yb+173
- verfasst von
- Jialiang Yu, Anand Prakash, Clara Zyskind, Ikbal Ahamed Biswas, Rattakorn Kaewuam, Piyaphat Phoonthong, Tanja E. Mehlstäubler
- Abstract
We report the coherent excitation of the highly forbidden S21/2→F27/2 clock transition in the odd isotope Yb+173 with nuclear spin I=5/2, and reveal the hyperfine-state-dependent, nuclear-spin–induced quenching of this transition. The inferred lifetime of the Fe=4 hyperfine state is one order of magnitude shorter than the unperturbed F27/2 clock state of Yb+171. This reduced lifetime lowers the required optical power for coherent excitation of the clock transition, thereby reducing the ac Stark shift caused by the clock laser. Using a three-ion Coulomb crystal, we experimentally demonstrate an approximately twentyfold suppression of the ac Stark shift, a critical improvement for the scalability of future multi-ion Yb+ clocks. Furthermore, we report the |S1/22,Fg=3⟩→|F7/22,Fe=6⟩ unquenched reference transition frequency as 642.11917656354(43) THz, along with the measured hyperfine splitting and calculated quadratic Zeeman sensitivities of the F27/2 clock state. Our results pave the way toward multi-ion optical clocks and quantum computers based on Yb+173.
- Organisationseinheit(en)
-
Institut für Quantenoptik
- Externe Organisation(en)
-
Physikalisch-Technische Bundesanstalt (PTB)
National Institute of Metrology (Thailand)
- Typ
- Artikel
- Journal
- Physical review letters
- Band
- 136
- ISSN
- 0031-9007
- Publikationsdatum
- 16.01.2026
- Publikationsstatus
- Veröffentlicht
- Peer-reviewed
- Ja
- ASJC Scopus Sachgebiete
- Allgemeine Physik und Astronomie
- Elektronische Version(en)
-
https://doi.org/10.1103/fx1b-5666 (Zugang:
Offen)