2016
DOI: 10.1088/1674-1056/25/11/113703
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An optimized ion trap geometry to measure quadrupole shifts of 171 Yb + clocks

Abstract: We propose a new ion-trap geometry to carry out accurate measurements of the quadrupole shifts in the 171 Yb-ion. This trap will produce nearly ideal harmonic potential where the quadrupole shifts due to the anharmonic components can be reduced by four orders of magnitude. This will be useful to reduce the uncertainties in the clock frequency measurements of the 6s 2 S 1/2 → 4f 13 6s 2 2 F 7/2 and 6s 2 S 1/2 → 5d 2 D 3/2 transitions, from which we can deduce precise values of the quadrupole moments (Θs) of the… Show more

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Cited by 11 publications
(18 citation statements)
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References 54 publications
(98 reference statements)
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“…This is a unique feature of a truncated RCC method in contrast to other truncated many-body methods owing to the exponential form of expression in Eq. (13). In fact, it has also been employed to calculate many atomic properties of Yb + accurately in the past [6,12].…”
Section: Methods Of Calculationsmentioning
confidence: 99%
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“…This is a unique feature of a truncated RCC method in contrast to other truncated many-body methods owing to the exponential form of expression in Eq. (13). In fact, it has also been employed to calculate many atomic properties of Yb + accurately in the past [6,12].…”
Section: Methods Of Calculationsmentioning
confidence: 99%
“…This is owing to the fact that its E1 matrix element is almost half while its transition energy is twice larger than the corresponding value of the [4f 14 5d] 2 D 3/2 → [4f 14 6p] 2 P 1/2 transition. Noticeably contributions from the [4f 13 5d6s] configurations are non-significant as seen in Table 1. Unlike for the ground state, the "Tail" contribution to α [4f 14 5d] 2 D 3/2 clock transition as -0.44(3) Hz.…”
Section: Static Polarizabilitymentioning
confidence: 99%
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