Static and dynamic polarizabilities of Yb-ion]{Accurate determination of black-body radiation shift, magic and tune-out wavelengths for the $\rm 6S_{1/2} \rightarrow 5D_{3/2}$ clock transition in Yb$^+$
A. Roy, S. De, Bindiya Arora, and B. K. Sahoo

TL;DR
This paper provides precise calculations of polarizabilities, magic, and tune-out wavelengths for Yb$^+$ ion states, crucial for improving optical clock accuracy by reducing systematic errors.
Contribution
The study offers the first accurate theoretical determination of static and dynamic polarizabilities, magic, and tune-out wavelengths for Yb$^+$ ion states relevant to optical clock development.
Findings
Calculated static polarizabilities for ground and metastable states.
Estimated black-body radiation shift of the clock transition.
Reported magic and tune-out wavelengths for Yb$^+$.
Abstract
We present precise values of the dipole polarizabilities () of the ground and metastable states of Yb, that are %vital {\bf important} in reducing systematics in the clock frequency of the transition. The static values of for the ground and states are estimated to be and , respectively, while the tensor contribution to the state as compared to the experimental value . This corresponds to the differential scalar polarizability value of the above transition as (5)$\,\times\, 10^{-40}\,\rm Jm^2…
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