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Fast-timing spectroscopy at ISOLDE

机译:isolde的快速定时光谱

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摘要

The advanced time-delayed beta gamma gamma(t) method has been used at ISOLDE since the relocation of the facility from the synchrocyclotron to the CERN proton synchrotron booster, a quarter of a century ago. The method was designed for precision measurements with low-intensity beams, achieving good efficiency and excellent time resolution with a compact setup. Over this time the technique has evolved to cope with the challenge of measuring lifetimes of complex level schemes of increasingly exotic nuclei populated in beta decay. The ISOLDE facility provides unsurpassed opportunities to study many regions of the nuclide chart. The physics case encompasses topics of interest across the nuclide chart, including the evolution of shell structure around neutron shell and subshell closures such as N = 20, N = 40 and N = 50, shape coexistence, and octupole correlations in heavy nuclei. The recently commissioned ISOLDE decay station provides enhanced capabilities that will be fully exploited with the increased beam intensities available at the upcoming HIE-ISOLDE facility.
机译:自从四分之一个世纪前将该设施从同步回旋加速器转移到欧洲核子研究中心质子同步加速器助推器以来,先进的延时β-伽马(t)方法已在ISOLDE使用。该方法设计用于低强度光束的精确测量,在紧凑的设置下实现了良好的效率和良好的时间分辨率。在这段时间里,这项技术已经发展到可以应对测量复杂能级方案的寿命的挑战,这些复杂能级方案中充满了β衰变的越来越奇异的原子核。ISOLDE设施为研究核素图的许多区域提供了无与伦比的机会。物理案例涵盖了整个核素图中感兴趣的主题,包括围绕中子壳层和子壳层闭合(如N=20、N=40和N=50)、形状共存和重核中的八极关联的壳层结构演化。最近投入使用的ISOLDE衰变站提供了增强的能力,随着即将到来的HIE-ISOLDE设施中可用的光束强度的增加,这些能力将得到充分利用。

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