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Shape-driving effects in the triaxial nucleus, 128Xe

机译:三轴核 128 Xe中的形状驱动效应

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摘要

An extended decay scheme for 128Xe has been constructed by using data from the 124Sn(9Be, 5n)128Xe reaction at a beam energy of 58 MeV. Bands have been identified as being built on several intrinsic states, including a proposed 9/2-[514] [direct-product]1/2+[400] two-quasineutron configuration that forms the Kpi=5- intrinsic state at 2228 keV, and on a previously assigned Kpi=8- intrinsic state at 2786 keV. A half-life of 73(3) ns has been measured for the latter. Theoretical calculations have been performed by using the configuration-constrained blocking method based on a nonaxial Woods-Saxon potential. Large gamma deformation and gamma softness are predicted for the ground state and the Kpi=5- intrinsic state, whereas a nearly axially symmetric shape is predicted for the Kpi=8- two-quasiparticle configuration. The low value of the hindrance factor for the E1 transition depopulating the Kpi=8- intrinsic state is discussed in the context of analogous transitions in neighbouring N=74 isotones.
机译:通过使用来自124Sn(9Be,5n)128Xe反应的数据以58 MeV的束能量构建了128Xe的扩展衰减方案。能带已被确定为建立在几种本征态上,包括拟议的9 / 2- [514] [直接乘积] 1/2 + [400]两准中子构型,其在2228 keV时形成Kpi = 5-本征态,并且在先前分配的Kpi = 8-本征态下为2786 keV。后者的半衰期为73(3)ns。理论计算已通过使用基于非轴Woods-Saxon势的结构受限的阻塞方法进行。对于基态和Kpi = 5-本征态,预计会有较大的伽玛变形和伽马柔软度,而对于Kpi = 8- 2准粒子构型,则预测为近似轴向对称的形状。在相邻的N = 74个同调异构体中的类似跃迁的背景下,讨论了E1跃迁使Kpi = 8-本征态消失的阻碍因子的低值。

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