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- W2062986469 abstract "The technique of paramagnetic resonance absorption has been used to measure the $g$-factors of the ground $^{3}P$ term in ${mathrm{O}}^{16}$ in terms of the proton $g$-factor. The results are: $ensuremath{-}frac{{g}_{J}(mathrm{O}; ^{3}P_{1})}{{g}_{p}}=493.4236ifmmodepmelsetextpmfi{}0.0002$ and $ensuremath{-}frac{{g}_{J}(mathrm{O}; ^{3}P_{2})}{{g}_{p}}=493.4022ifmmodepmelsetextpmfi{}0.0002$, where ${g}_{p}$ refers to protons in a cylindrical sample of mineral oil. When combined with $frac{{g}_{J}(mathrm{H}; ^{2}S_{frac{1}{2}})}{{g}_{p}}$, measured in analogous experiments on hydrogen, and after inserting the theoretical value of ${g}_{J}(mathrm{H}; ^{2}S_{frac{1}{2}})$, the oxygen $g$-factors are found to be ${g}_{J}(mathrm{O}; ^{3}P_{1})=1.500986ifmmodepmelsetextpmfi{}0.000002$, ${g}_{J}(mathrm{O}; ^{3}P_{2})=1.500921ifmmodepmelsetextpmfi{}0.000002$. A discrepancy of 7 parts in ${10}^{6}$ between these values and corresponding theoretical $g$-factors can probably be ascribed to inaccuracy of the atomic wave functions used in the theoretical calculations." @default.
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- W2062986469 date "1959-06-01" @default.
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- W2062986469 title "Microwave Zeeman Spectrum of Atomic Oxygen" @default.
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- W2062986469 doi "https://doi.org/10.1103/physrev.114.1274" @default.
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