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- W2018700031 abstract "We report our final result on the Lamb-shift measurement in hydrogenlike phosphorous using the $2{s}_{frac{1}{2}}ensuremath{-}2{p}_{frac{3}{2}}$ laser-resonance method. From the measured value of the $2{s}_{frac{1}{2}}ensuremath{-}2{p}_{frac{3}{2}}$ energy splitting [539.60(20) THz, or 5555.8(2.0) AA{}] the Lamb shift $S$ is deduced in the framework of Erickson's and Mohr's calculations. ${S}_{mathrm{expt}}^{mathrm{E}}$ and ${S}_{mathrm{expt}}^{mathrm{M}}$ are the results of the subtraction of the measured $2{s}_{frac{1}{2}}ensuremath{-}2{p}_{frac{3}{2}}$ energy splitting and the fine structure calculated by the two authors, respectively. The results, $|{S}_{mathrm{E}}ensuremath{-}{S}_{mathrm{expt}}^{mathrm{E}}|=0.43ifmmodepmelsetextpmfi{}0.20$ THz and $|{S}_{mathrm{M}}ensuremath{-}{S}_{mathrm{expt}}^{mathrm{M}}|=0.12ifmmodepmelsetextpmfi{}0.20$ THz, indicate agreement with Mohr's theoretical approach (${S}_{mathrm{M}}$) and are more than two standard deviations from Erickson's calculations (${S}_{mathrm{E}}$). A general overview on the experimental techniques and results is given. The general trend of the presently available experimental results on Lamb-shift measurements are compared with Mohr's calculations." @default.
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- W2018700031 date "1985-01-01" @default.
- W2018700031 modified "2023-09-23" @default.
- W2018700031 title "Laser-resonance Lamb-shift measurement in hydrogenlike phosphorus" @default.
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- W2018700031 doi "https://doi.org/10.1103/physreva.31.5" @default.
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