3.8 Proceedings Paper

Resonance ionization spectroscopy in dysprosium Excitation scheme development and re-determination of the first ionization potential

Journal

HYPERFINE INTERACTIONS
Volume 238, Issue -, Pages -

Publisher

SPRINGER
DOI: 10.1007/s10751-016-1384-4

Keywords

Resonance ionization spectroscopy; Ionization potential; Ionization scheme development; Dysprosium

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We report on resonance ionization spectroscopy (RIS) of high-lying energy levels in dysprosium. We developed efficient excitation schemes and re-determined the first ionization potential (IP) via analysis of Rydberg convergences. For this purpose both two-and three-step excitation ladders were investigated. An overall ionization efficiency of 25(4) % could be demonstrated in the RISIKO mass separator of Mainz University, using a three-step resonance ionization scheme. Moreover, an extensive analysis of the even-parity 6sns-and 6snd-Rydberg-series convergences, measured via two-step excitation was performed. To account for strong perturbations in the observed s-series, the approach of multichannel quantum defect theory (MQDT) was applied. Considering all individual series limits we extracted an IP-value of 47901.76(5) cm(-1), which agrees with the current literature value of 47901.7(6) cm(-1), but is one order of magnitude more precise.

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