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Nuclear structure of $$^{181}$$ 181 Au studied via $$\upbeta ^+$$ β + /EC decay of $$^{181}$$ 181 Hg at ISOLDE
The European Physical Journal A ( IF 2.7 ) Pub Date : 2020-06-05 , DOI: 10.1140/epja/s10050-020-00174-0
M. Sedlák , M. Venhart , J. L. Wood , V. Matoušek , M. Balogh , A. J. Boston , T. E. Cocolios , L. J. Harkness-Brennan , R.-D. Herzberg , D. T. Joss , D. S. Judson , J. Kliman , R. D. Page , A. Patel , K. Petrík , M. Veselský

The \(\upbeta ^+\)/EC decay of mass separated samples of \(^{181}\)Hg was studied employing the TATRA spectrometer at the ISOLDE facility at CERN. The decay scheme was constructed for the first time. A Broad Energy Germanium detector was used to achieve this by combination of high-gain \(\upgamma \)-ray singles spectroscopy and \(\upgamma \)\(\upgamma \) coincidences. The systematics of excited states associated with the 1\(h_{11/2}\) proton-hole configuration in odd-Au isotopes was extended.

中文翻译:

$$ ^ {181} $$ 181 Au的核结构通过$$ \ upbeta ^ + $$β+ / ECLDE的$$ ^ {181} $$ 181 Hg的EC衰减研究

在欧洲核子研究组织(CERN)的ISOLDE工厂使用TATRA光谱仪研究了质量分离的\(^ {181} \) Hg样品的\(\ upbeta ^ + \) / EC衰减。衰减方案是第一次构建的。宽能量锗探测器通过高增益\(\ upgamma \)射线单光光谱法和\(\ upgamma \)\(\ upgamma \) 巧合的组合来实现这一目标。扩展了与奇数Au同位素中1 \(h_ {11/2} \)质子孔构型相关的激发态的系统。
更新日期:2020-06-05
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