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- W2271087410 abstract "We present absolute-frequency measurements for the transitions from the 6s$_{1/2}$ ground state of $^{133}$Cs to $n$p$_{1/2}$ and $n$p$_{3/2}$ Rydberg states. The transition frequencies are determined by one-photon UV spectroscopy in ultracold samples of Cs atoms using a narrowband laser system referenced to a frequency comb. From a global fit of the ionization energy $E_mathrm{I}$ and the quantum defects of the two series we determine an improved value of $E_mathrm{I} = h c cdot 31 406.467 732 5(14)$ cm$^{-1}$ for the ionization energy of Cs with a relative uncertainty of $5times10^{-11}$. We also report improved values for the quantum defects of the $n$p$_{1/2}$, $n$p$_{3/2}$, $n$s$_{1/2}$, and $n$d$_{5/2}$ series." @default.
- W2271087410 created "2016-06-24" @default.
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- W2271087410 date "2016-01-28" @default.
- W2271087410 modified "2023-09-27" @default.
- W2271087410 title "Precision measurement of the ionization energy of Cs i" @default.
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- W2271087410 doi "https://doi.org/10.1103/physreva.93.013424" @default.
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