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Design study for the KOBRA (KOrea Broad acceptance Recoil spectrometer and Apparatus) at RAON

机译:在RAON上进行KOBRA(韩国广泛认可的反冲光谱仪和设备)的设计研究

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The KOBRA (KOrea Broad acceptance Recoil spectrometer and Apparatus) is a multi-purpose recoil spectrometer for low-energy nuclear experiments at the RAON accelerator complex. It is divided into two stages based on the operational function: the first stage (F0-F3) is an in-flight separator or beam transport line, and the second stage (F3-F5) is a large acceptance spectrometer. For spectrometers using radioactive ion (RI) beams, high performance, such as high resolution and large acceptance, are especially required due to the limit of quality of RI beams. In this respect, a dispersion-matching technique and a movable magnet system were employed for high resolution and large acceptance, respectively. Reaction spectra at the focal plane for the dispersion matching mode were obtained and analyzed using a Monte Carlo simulation code. In addition, the geometrical angular acceptances with respect to the distance between the reaction target and the first Q-pole doublet of the second stage were calculated, and the expected maximum solid angle of the spectrometer was estimated.
机译:KOBRA(韩国广泛认可的反冲光谱仪和仪器)是一种多功能反冲光谱仪,用于在RAON加速器综合设施进行低能核试验。根据操作功能将其分为两个阶段:第一阶段(F0-F3)是机上分离器或光束传输线,第二阶段(F3-F5)是大型接受光谱仪。对于使用放射性离子(RI)束的光谱仪,由于RI束质量的限制,特别需要诸如高分辨率和大接受度的高性能。在这方面,色散匹配技术和可移动磁体系统分别用于高分辨率和大接受度。获得了用于色散匹配模式的焦平面上的反应光谱,并使用蒙特卡洛模拟代码进行了分析。另外,计算了相对于反应目标与第二级的第一Q极双峰之间的距离的几何角度接受度,并估算了光谱仪的预期最大立体角。

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