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Development of a versatile user-friendly IBA experimental chamber

机译:开发通用的用户友好型IBA实验箱

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摘要

Reliable performance of the Ion Beam Analysis (IBA) techniques is based on the accurate geometry of the experimental setup, employment of the reliable nuclear data and implementation of dedicated analysis software for each of the IBA techniques. It has already been shown that geometrical imperfections lead to significant uncertainties in quantifications of IBA measurements. To minimize these uncertainties, a user-friendly experimental chamber with a heuristic sample positioning system for IBA analysis was recently developed in the Van de Graaff laboratory in Tehran. This system enhances IBA capabilities and in particular Nuclear Reaction Analysis (NRA) and Elastic Recoil Detection Analysis (ERDA) techniques. The newly developed sample manipulator provides the possibility of both controlling the tilt angle of the sample and analyzing samples with different thicknesses. Moreover, a reasonable number of samples can be loaded in the sample wheel. A comparison of the measured cross section data of the ~(16)O(d,p_1)~(17)O reaction with the data reported in the literature confirms the performance and capability of the newly developed experimental chamber.
机译:离子束分析(IBA)技术的可靠性能基于实验装置的精确几何形状,可靠的核数据的使用以及每种IBA技术的专用分析软件的实现。业已证明,几何缺陷会导致IBA测量量化的重大不确定性。为了最大程度地减少这些不确定性,最近在德黑兰的Van de Graaff实验室开发了一个用户友好的实验箱,该实验箱带有用于IBA分析的启发式样品定位系统。该系统增强了IBA功能,特别是增强了核反应分析(NRA)和弹性反冲检测分析(ERDA)技术。新开发的样品操纵器提供了控制样品倾斜角和分析不同厚度样品的可能性。而且,可以在样品轮中装载合理数量的样品。将〜(16)O(d,p_1)〜(17)O反应的测量横截面数据与文献中报道的数据进行比较,证实了新开发的实验室的性能和能力。

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