A=186的核数据表

IF 2.8 1区 物理与天体物理 Q2 PHYSICS, NUCLEAR
J.C. Batchelder, A.M. Hurst, M.S. Basunia
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引用次数: 4

摘要

本文介绍了186Lu、186Hf、186Ta、186W、186Re、186Os、186Ir、186Pt、186Au、186Hg、186Tl、186Pb、186Bi和186Po的放射性衰变和核反应研究的评估光谱数据和能级方案。对A=186的计算取代了C. M. Baglin先前的计算2003Ba44。该评估的亮点如下:186Re:修订的%ε和%β -分支。新值与之前的值几乎相同。基于2015Ma60 (187Re(n, 2nγ))报道的研究,对长寿命(8+)异构体采用了148.2 keV 5的能级能,而之前的评估(2003Ba44)为149 keV 7。186Hg:在1992Po01和1993Ma02之间的能级方案差异仍有待实验解决,主要是由于1228 keV带头和2+ 621 keV带头之间≈607 keV γ跃迁的多极性。参见采用的水平,伽玛数据集的一般评论。186Tl:从α衰变研究中,2020St11提出了在能级为77 keV 56的0.0+x激发能级上的g.s.的自旋宇称(2−)和(7+)。从质量测量,2014Bo26提出(7−)能级的能量20 keV 40较早。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nuclear Data Sheets for A=186

Evaluated spectroscopic data and level schemes from radioactive decay and nuclear reaction studies are presented for 186Lu, 186Hf, 186Ta, 186W, 186Re, 186Os, 186Ir, 186Pt, 186Au, 186Hg, 186Tl, 186Pb, 186Bi, and 186Po. This evaluation for A=186 supersedes the earlier evaluation 2003Ba44 by C. M. Baglin. Highlights of this evaluation are the following: 186Re: Revised %ε and %β branches. New values are almost same as of the earlier ones. Adopted improved level energy for the long-lived (8+) isomer at 148.2 keV 5 based on the study reported in 2015Ma60 (187Re(n, 2nγ)) compared to 149 keV 7 in previous evaluation (2003Ba44). 186Hg: Discrepancies in the level schemes between 1992Po01 and 1993Ma02 remain to resolve experimentally, arise primarily due to the assigned multipolarity of the ≈607 keV γ transition between the 1228 keV bandhead and the 2+ 621 keV level. See general comments in Adopted Levels, Gammas dataset. 186Tl: From α decay studies, 2020St11 propose spin-parity (2) for the g.s. and (7+) for the excited level at 0.0+x of level energy of 77 keV 56. From mass measurements, 2014Bo26 propose the (7) level energy of 20 keV 40 earlier.

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来源期刊
Nuclear Data Sheets
Nuclear Data Sheets 物理-物理:核物理
CiteScore
7.80
自引率
5.40%
发文量
22
审稿时长
>12 weeks
期刊介绍: The Nuclear Data Sheets are current and are published monthly. They are devoted to compilation and evaluations of experimental and theoretical results in Nuclear Physics. The journal is mostly produced from Evaluated Nuclear Structure Data File (ENSDF), a computer file maintained by the US National Nuclear Data Center
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