论文标题
KLF项目的铍目标的概念设计
Conceptual Design of Beryllium Target for the KLF Project
论文作者
论文摘要
KAON生产目标(KPT)是拟议的K-Long设施的重要组成部分,该设施将在Jlab Hall〜D中进行操作,靶向奇怪的Baryon和Meson光谱。在本说明中,我们为计划的k-long梁系列介绍了一个概念设计,该组件将与粘合剂光谱仪一起在其标准配置中用于提议的实验。高质量的12-GEV CEBAF电子光束可以按$ 1 \ times 10^4 k_l/sec $的订单生产k $ _l $通量,超过以前在SLAC获得的K $ _l $ flux的订单,该量超过了三个数量级。强烈的k $ _l $ beam将不仅打开一个新的机会窗口,不仅可以在奇怪的强子频谱中找到“缺少共振”,而且还可以通过系统地研究不同的衰减渠道来确定其属性。 K $ _l $生产中最重要,最重要的损害背景是由于中子引起的。针对KPT提出的概念设计的蒙特卡洛模拟表明,所得的中子和伽马通量导致KLF实验的迅速辐射剂量速率低于JLAB辐射控制部门的辐射剂量率限制实验厅和现场边界处的辐射剂量限制,并且不会严重影响光谱计的性能。
The Kaon Production Target (KPT) is an important component of the proposed K-Long facility which will be operated in JLab Hall~D, targeting strange baryon and meson spectroscopy. In this note we present a conceptual design for the Be-target assembly for the planned K-Long beam line, which will be used along with the GlueX spectrometer in its standard configuration for the proposed experiments. The high quality 12-GeV CEBAF electron beam enables production of a K$_L$ flux at the GlueX target on the order of $1\times 10^4 K_L/sec$, which exceeds the K$_L$ flux previously attained at SLAC by three orders of magnitude. An intense K$_L$ beam would open a new window of opportunity not only to locate "missing resonances" in the strange hadron spectrum, but also to establish their properties by studying different decay channels systematically. The most important and radiation damaging background in K$_L$ production is due to neutrons. The Monte Carlo simulations for the proposed conceptual design of KPT show that the resulting neutron and gamma flux lead to a prompt radiation dose rate for the KLF experiment that is below the JLab Radiation Control Department radiation dose rate limits in the experimental hall and at the site boundary, and will not substantially affect the performance of the spectrometer.