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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Radiation damage from energetic particles at GRad-level of SiO_2 fibers of the Large Hadron Collider ATLAS Zero-Degree Calorimeter (ZDC)
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Radiation damage from energetic particles at GRad-level of SiO_2 fibers of the Large Hadron Collider ATLAS Zero-Degree Calorimeter (ZDC)

机译:大型强子撞机射线零度热量计(ZDC)的SiO_2纤维升级精力粒子辐射损伤

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Core SiO_2 quartz fibers of the Large Hadron Collider (LHC) ATLAS Zero-degree Calorimeter (ZDC) are expected to experience integrated doses of a few giga-Rad (Grad) at their closest position to the LHC beam. An array of fibers was irradiated with 200 MeV protons and spallation-generated mixed spectra (primarily fast neutrons) at the Brookhaven National Laboratory (BNL) Linac. Specifically, 1 mm- and 2 mm-diameter quartz (GE 124) rods of 50 mm length were exposed to direct 200 MeV protons leading to peak integrated dose of ~28 Grad (~0.28 GGy). Exposure of 1 mm-diameter SiO_2 fibers to a neutron flux was also achieved in the spallation field generated by 128 MeV protons. In the post-irradiation analysis, the quartz fiber transmittance was evaluated as a function of the absorbed dose. Significant degradation of the transmittance and increased radiation damage of the material were observed. Microscopic evaluation of the fibers revealed extensive micro-structural damage and irradiation-induced defects. The measurements revealed that a threshold fluence (~2.6 10~(16) p/cm~2) or dose of ~10 Grad (0.1 GGy) appears to exist beyond which light transmittance drops below 10%. Also observed is that fiber transmittance loss increased drastically with SiO_2 fiber diameter (1 mm vs. 2 mm diameter). This is attributed, in part, to the earlier lateral leakage from the 1 mm fiber of knock-on electrons and primary protons implying that more damage-inducing protons travel within the bulk of the 50 mm long 2-mm fibers. While Monte Carlo simulations performed tend to support such assumption, future experiments and sensitivity studies are envisioned to address the fiber diameter influence on degradation.
机译:大型强子撞机(LHC)阿特拉斯零度量热计(ZDC)的核心SiO_2石英光纤预计将在其最接近LHC梁的少数Giga-Rad(毕业)的集成剂量。在Brookhaven国家实验室(BNL)Linac中,用200meV质子和脱模的混合光谱(主要快速中子)照射一系列纤维。具体地,将50mm长度的1mm-and 2mm-124)棒暴露于直接200meV质子,导致达28级(〜0.28 ggy)的峰值集成剂量。在128meV质子产生的介质场中也实现了1mm直径的SiO_2纤维到中子丝量的曝光。在后照射后分析中,评估石英纤维透射率作为吸收剂量的函数。观察到透射率的显着降解和材料的增加的辐射损伤。纤维的微观评估显示出广泛的微结构损伤和辐照诱导的缺陷。测量显示,阈值流量(〜2.6 10〜(16)p / cm〜2)或〜10级(0.1 ggy)的剂量似乎存在于哪个低于10%的透光率下降。还观察到的是,纤维透射率损失随着SiO_2纤维直径(直径为1mm,直径为1mm)。部分地部分地归因于从敲击电子和初级质子的1mm光纤的早期横向泄漏,这意味着更损坏的诱导质子在50mm长的2mm纤维的体积内行进。虽然Monte Carlo模拟往往支持这种假设,但设想了未来的实验和敏感性研究以解决对降解的影响。

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