Abstract
New measurements of the relative oscillator strengths of copper for the 3 d 104 s 2 S 1/2→3 d 10n p 2 P 1/2, (7 ≤ n ≤ 13), and 2 P 3/2(7 ≤ n ≤ 23) series are reported. The data were acquired using the magneto-optical rotation spectroscopic technique, utilizing the linearly polarized light emitted by the 2.5 GeV electron accelerator, a 7 Tesla superconducting magnet, and a 3-meter high dispersion spectrograph with photographic detection. A quantum defect plot of the density of oscillator strengths of the discrete transitions is also presented.
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