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TIME-RESOLVED AND TIME-INTEGRAL ONLINE NUCLEAR ORIENTATION MEASUREMENTS OF NEUTRON-DEFICIENT HG-AU-PT-IR NUCLEI

机译:中子缺陷HG-AU-PT-IR核的时间分辨和时间积分在线核取向测量

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摘要

The methods of time-resolved and time-integral on-line nuclear orientation have been applied to study short lived nuclei with the NICOLE facility (Nuclear Implantation into Cold On-Line Equipment) at ISOLDE-3 in CERN using beams of 182-186Hg. The half-lives in these decay chains are of the order of seconds and therefore comparable to the spin-lattice relaxation times of the nuclei in iron. As the relaxation rate depends strongly on the g-factor, g-factors of nuclei in the decay chains can be deduced from the observation of the time evolution of γ-ray anisotropy. Using this technique the existence of an isomer in 184Au has been found and the g-factors of 184Au, 184mAu and 182Au have been determined. Accurate half-lives have been extracted from the data. Time-integral nuclear orientation has been observed for short lived as well as longer lived isotopes of the Hg decay chains. From these measurements, after proper correction for incomplete relaxation, the magnetic moments of 183mPt, 183Ir and 182Ir have been derived. The applicability of the time-resolved nuclear orientation technique for nuclei far from stability and its possible limitations is discussed. © 1992 J.C. Baltzer A.G., Scientific Publishing Company.
机译:时间分辨和时间积分在线核定向的方法已被用于研究核素在欧洲核子研究中心(ISOLDE-3)的NICOLE设施(将核植入冷在线设备中)和182-186Hg光束,用于研究短寿命核。这些衰变链中的半衰期约为秒,因此可与铁中核的自旋晶格弛豫时间相媲美。由于弛豫率很大程度上取决于g因子,因此可以从对γ射线各向异性的时间演化的观察中推导出衰变链中原子核的g因子。使用该技术,发现了184Au中存在异构体,并确定了184Au,184mAu和182Au的g因子。已从数据中提取了准确的半衰期。对于汞衰变链的短寿命和长寿命同位素,已经观察到时间积分核取向。从这些测量中,经过适当校正以实现不完全松弛,可以得出183mPt,183Ir和182Ir的磁矩。讨论了时间分辨核取向技术在原子核中的应用,该技术远非稳定性及其可能的局限性。 ©1992 J.C. Baltzer A.G.,科学出版公司。

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