发现新元素:用 50Ti 生产 Livermorium (Z=116)

J. M. Gates, R. Orford, D. Rudolph, C. Appleton, B. M. Barrios, J. Y. Benitez, M. Bordeau, W. Botha, C. M. Campbell, J. Chadderton, A. T. Chemey, R. M. Clark, H. L. Crawford, J. D. Despotopulos, O. Dorvaux, N. E. Esker, P. Fallon, C. M. Folden III, B. J. P. Gall, F. H. Garcia, P. Golubev, J. A. Gooding, M. Grebo, K. E. Gregorich, M. Guerrero, R. A. Henderson, R. -D. Herzberg, Y. Hrabar, T. T. King, M. Kireeff Covo, A. S. Kirkland, R. Krücken, E. Leistenschneider, E. M. Lykiardopoulou, M. McCarthy, J. A. Mildon, C. Müller-Gatermann, L. Phair, J. L. Pore, 1 E. Rice, K. P. Rykaczewski, B. N. Sammis, L. G. Sarmiento, D. Seweryniak, D. K. Sharp, A. Sinjari, P. Steinegger, M. A. Stoyer, J. M. Szornel, K. Thomas, D. S. Todd, P. Vo, V. Watson, P. T. Wooddy
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引用次数: 0

摘要

劳伦斯伯克利国家实验室的88英寸回旋加速器设施研究了$^{244}$Pu($^{50}$Ti,$xn$)$^{294-x}$Lv反应。该实验的目的是通过用比^{48}$Ca重的束流辐照锕系元素靶,生产出Z/ge 114$的超重元素。利用伯克利气体填充分离器将产生的Lv离子与无用的光束和核反应产物分离,并植入新启用的焦平面探测器系统。在220(3)~MeV的目标中心质量中心能量下,测量到的产生截面为:$\sigma_\rm prod}=0.44(^{+58}_{-28})$~pb 。这是首次公开发表的用一束^{50}$钛在 "稳定岛 "附近产生超重元素的测量结果,是寻找Z=118$以外新元素的重要先导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards the Discovery of New Elements: Production of Livermorium (Z=116) with 50Ti
The $^{244}$Pu($^{50}$Ti,$xn$)$^{294-x}$Lv reaction was investigated at Lawrence Berkeley National Laboratory's 88-Inch Cyclotron facility. The experiment was aimed at the production of a superheavy element with $Z\ge 114$ by irradiating an actinide target with a beam heavier than $^{48}$Ca. Produced Lv ions were separated from the unwanted beam and nuclear reaction products using the Berkeley Gas-filled Separator and implanted into a newly commissioned focal plane detector system. Two decay chains were observed and assigned to the decay of $^{290}$Lv. The production cross section was measured to be $\sigma_{\rm prod}=0.44(^{+58}_{-28})$~pb at a center-of-target center-of-mass energy of 220(3)~MeV. This represents the first published measurement of the production of a superheavy element near the `Island-of-Stability', with a beam of $^{50}$Ti and is an essential precursor in the pursuit of searching for new elements beyond $Z=118$.
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