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Radiation-hardening techniques of dedicated optical fibres used in plasma diagnostic systems in ITER

机译:ITER等离子体诊断系统中专用光纤的辐射硬化技术

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This paper addresses the particular need to develop suitable fabrication techniques of glasses to improve the radiation-resistance and extend the lifetime of optical fibres in high radiation background. Two radiation hardening techniques based on hydrogen and fluorine doping of glass have been applied on step index pure silica core optical fibres. The radiation-induced optical absorption and luminescence have been measured in gamma and fission reactor irradiation conditions at SCKCEN, Mol Belgium. The experimental results show that the lowest optical absorption is achieved in the hydrogen-treated fibre sample. However, the luminescence effect remains significant in any type of fibre and cannot be reduced by the investigated radiation hardening techniques. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文提出了开发合适的玻璃制造技术以提高抗辐射性并延长高辐射背景下光纤寿命的特殊需要。两种基于玻璃氢和氟掺杂的辐射硬化技术已应用于阶跃折射率纯硅纤芯光纤。辐射诱发的光吸收和发光已经在比利时莫尔的SCKCEN的伽马和裂变反应堆辐照条件下进行了测量。实验结果表明,在氢处理的纤维样品中实现了最低的光吸收。然而,在任何类型的光纤中,发光效果仍然很明显,并且不能通过研究的辐射硬化技术来降低。 (C)2004 Elsevier B.V.保留所有权利。

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