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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Conceptual design and performance study for the first implementation of AGATA at the in-flight RIB facility of GSI
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Conceptual design and performance study for the first implementation of AGATA at the in-flight RIB facility of GSI

机译:在GSI的机上RIB设施中首次实施AGATA的概念设计和性能研究

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The main objective of the Advanced GAmma Tracking Array (AGATA) is the investigation of the structure of exotic nuclei at the new generation of RIB facilities. As part of the preparatory phase for FAIR-NUSTAR, AGATA is going to be installed at the FRS fragmentation facility of the GSI centre for an experimental campaign to be performed in 2012 and 2013. Owing to its y-ray tracking capabilities and the envisaged enhancement in resolving power, a series of in-flight y-ray spectroscopy experiments are being planned. The present work describes the conceptual design of this first implementation of AGATA at CSI-FRS, and provides information about the expected performance figures. According to the characteristics of each particular experiment, it is foreseen that the target-array distance is adjusted in order to achieve the optimum compromise between detection efficiency and energy resolution, or to cover an specific angular range of the emitted electromagnetic radiation. Thus, a comprehensive Monte Carlo study of the detection sensitivity in terms of photopeak efficiency, resolution and peak-to-total ratio, as a function of the target-array distance is presented. Several configurations have been investigated, and MC-calculations indicate that a remarkable enhancement in resolving power can be achieved when double-cluster AGATA detectors are developed and implemented. Several experimental effects are also investigated. This concerns the impact of passive materials between the target and the array, the angular distribution of the detection efficiency and the influence of target thickness effects and transition lifetimes in the attainable detection sensitivity. A short overview on half-life measurements via lineshape effects utilizing AGATA is also presented.
机译:先进GAmma跟踪阵列(AGATA)的主要目标是研究新一代RIB设施中外来核的结构。作为FAIR-NUSTAR筹备阶段的一部分,AGATA将被安装在GSI中心的FRS碎片化设施中,以在2012年和2013年进行一项实验性活动。为了解决这一问题,正在计划进行一系列的飞行中y射线光谱实验。本工作描述了CSI-FRS上AGATA的第一个实现的概念设计,并提供了有关预期性能指标的信息。根据每个特定实验的特征,可以预见到要调整目标阵列的距离,以便在检测效率和能量分辨率之间达到最佳平衡,或者覆盖所发射电磁辐射的特定角度范围。因此,提出了根据光峰效率,分辨率和峰总比(作为目标阵列距离的函数)对检测灵敏度进行全面的蒙特卡洛研究。已经研究了几种配置,并且MC计算表明,当开发和实现双群集AGATA检测器时,可以实现分辨率的显着提高。还研究了几种实验效果。这涉及靶和阵列之间的无源材料的影响,检测效率的角度分布以及靶厚度效应和过渡寿命对可达到的检测灵敏度的影响。还简要介绍了利用AGATA通过线形效应进行半衰期测量的过程。

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