论文标题

145SM中高旋转异构体的伽马射线和转换电子光谱

Gamma-ray and conversion-electron spectroscopy of the high-spin isomer in 145Sm

论文作者

Gerathy, Matthew, Lane, Gregory, Stuchbery, Andrew, Dracoulis, George, Kibedi, Tibor, Akber, Aqeel, Bignell, Lindsey, Coombes, Ben, Dowie, Jackson, Gray, Timothy, Lee, Boon, McCormick, Brendan, Mitchell, Alan, Palalani, Nyaladzi

论文摘要

背景:在{\ aitt} 9-meV激发能量的高旋转异构体已在z = 64附近的几个n = 83同酮中报道。j {^π} = 49/2+的自旋和奇偶校验分配在奇数-A核中的许多状态中仍然是暂时的。目的:研究145 SM中(49/2 +)高旋转异构体的衰减,使其稳定的自旋和均衡分配到其衰减中填充的异构体和状态,并研究核的结构。方法:在124SN(26mg,5n)反应中填充了145SM异构体。使用Solenogam阵列收集伽马射线和转换电子数据。结果:测量了高旋转异构体的T1/2 = 3.52(16)MUS的修订寿命。已将几个新状态添加到了级别方案中,并提出了一个新的状态8815 KEV的新状态,作为基于衰减的系统学,过渡强度以及旋转和奇偶校验分配的ISOMER。已经对各州进行了稳固的旋转和均衡作业,包括异构体,并使用KSHELL程序执行的Shell模型计算来解释新的级别方案。结论:尽管49/2+异构体为核心中子的变形激发的解释仍然没有变化,尽管对等级的水平方案进行了重大修订,因此对下层状态的重新解释很大。

Background: High-spin isomers at {\approx}9-MeV excitation energies have been reported in several N = 83 isotones near Z = 64. Spin and parity assignments of J{^π} = 49/2+ remain tentative for a number of these states in the odd-A nuclei. Purpose: To study the decay of the (49/2 +) high-spin isomer in 145 Sm, make firm spin and parity assignments to the isomer and states populated in its decay, and investigate the structure of the nucleus. Methods: The 145Sm isomer was populated in the 124Sn(26Mg,5n) reaction. Gamma-ray and conversion-electron data were collected using the Solenogam array. Results: A revised lifetime of t1/2 = 3.52(16) mus was measured for the high-spin isomer. Several new states have been added to the level scheme, and a new state at 8815 keV is proposed as the isomer, based on decay-property systematics, transition strengths, and spin and parity assignments. Firm spin and parity assignments have been made to states up to and including the isomer and the new level scheme is interpreted using shell-model calculations performed with the KShell program. Conclusions: The interpretation of the 49/2+ isomer as a deformed excitation of the core neutrons remains unchanged, although there has been a significant revision of the level scheme below the isomer, and hence significant reinterpretations of the lower-lying states.

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