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缺中子银同位素的高精度质量测量探究N = 50壳层闭壳的稳定性

High-Precision Mass Measurements of Neutron Deficient Silver Isotopes Probe the Robustness of the N=50 Shell Closure.

作者信息

Ge Zhuang, Reponen Mikael, Eronen Tommi, Hu Baishan, Kortelainen Markus, Kankainen Anu, Moore Iain, Nesterenko Dmitrii, Yuan Cenxi, Beliuskina Olga, Cañete Laetitia, de Groote Ruben, Delafosse Clément, Dickel Timo, de Roubin Antoine, Geldhof Sarina, Gins Wouter, Holt Jason D, Hukkanen Marjut, Jaries Arthur, Jokinen Ari, Koszorús Ágota, Kripkó-Koncz Gabriella, Kujanpää Sonja, Lam Yi Hua, Nikas Stylianos, Ortiz-Cortes Alejandro, Penttilä Heikki, Pitman-Weymouth Daniel, Plaß Wolfgang, Pohjalainen Ilkka, Raggio Andrea, Rinta-Antila Sami, Romero Jorge, Stryjczyk Marek, Vilen Markus, Virtanen Ville, Zadvornaya Alexandra

机构信息

Department of Physics, <a href="https://ror.org/05n3dz165">University of Jyväskylä</a>, Accelerator Laboratory, P.O. Box 35, FI-40014, Jyväskylä, Finland.

<a href="https://ror.org/02k8cbn47">GSI Helmholtzzentrum für Schwerionenforschung GmbH</a>, 64291 Darmstadt, Germany.

出版信息

Phys Rev Lett. 2024 Sep 27;133(13):132503. doi: 10.1103/PhysRevLett.133.132503.

DOI:10.1103/PhysRevLett.133.132503
PMID:39392966
Abstract

High-precision mass measurements of exotic ^{95-97}Ag isotopes close to the N=Z line have been conducted with the JYFLTRAP double Penning trap mass spectrometer, with the silver ions produced using the recently commissioned inductively heated hot cavity catcher laser ion source at the Ion Guide Isotope Separator On-Line facility. The atomic mass of ^{95}Ag was directly determined for the first time. In addition, the atomic masses of β-decaying 2^{+} and 8^{+} states in ^{96}Ag have been identified and measured for the first time, and the precision of the ^{97}Ag mass has been improved. The newly measured masses, with a precision of ≈1  keV/c^{2}, have been used to investigate the N=50 neutron shell closure, confirming it to be robust. Empirical shell-gap and pairing energies determined with the new ground-state mass data are compared with the state-of-the-art ab initio calculations with various chiral effective field theory Hamiltonians. The precise determination of the excitation energy of the ^{96m}Ag isomer in particular serves as a benchmark for ab initio predictions of nuclear properties beyond the ground state, specifically for odd-odd nuclei situated in proximity to the proton dripline below ^{100}Sn. In addition, density functional theory calculations and configuration-interaction shell-model calculations are compared with the experimental results. All theoretical approaches face challenges to reproduce the trend of nuclear ground-state properties in the silver isotopic chain across the N=50 neutron shell and toward the proton dripline.

摘要

利用JYFLTRAP双彭宁阱质谱仪对靠近N=Z线的奇特95-97Ag同位素进行了高精度质量测量,银离子是使用在线同位素分离装置中最近启用的感应加热热腔捕集器激光离子源产生的。首次直接测定了95Ag的原子质量。此外,首次识别并测量了96Ag中β衰变2+和8+态的原子质量,并提高了97Ag质量的精度。新测量的质量精度约为1 keV/c2,已用于研究N=50中子壳层闭合,证实其稳定性。用新的基态质量数据确定的经验壳隙和配对能与使用各种手征有效场论哈密顿量的最新从头计算进行了比较。特别是96mAg异构体激发能的精确测定,为超出基态的核性质的从头预测提供了基准,特别是对于位于100Sn以下质子滴线附近的奇奇核。此外,将密度泛函理论计算和组态相互作用壳模型计算与实验结果进行了比较。所有理论方法在重现银同位素链中跨越N=50中子壳层并朝向质子滴线的核基态性质趋势方面都面临挑战。

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