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首页> 外文期刊>International journal of applied mechanics >Recent Advances in Silica Glass Optical Fiber for Dosimetry Applications
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Recent Advances in Silica Glass Optical Fiber for Dosimetry Applications

机译:用于剂量测定应用的二氧化硅玻璃光纤的最新进展

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In this paper, we review the highly promising silica glass, fabricated as doped and undoped optical fiber for intended use in radiation dosimetry. The dosimetry techniques reviewed here, underpinned by intrinsic and extrinsic defects in silica glass, focus on Thermoluminescence (TL), Optically Stimulated Luminescence (OSL) and Radioluminescence (RL), with occasional references to the much more established Radiation Induced Attenuation (RIA). The other focus in this review is on the various materials that have been reported earlier as dopants and modifiers used in silica glass optical fiber radiation dosimeters. This article also elaborates on recently reported optical fiber structures, namely, cylindrical fibers, photonic crystal fibers and flat fibers, as well as dimensions and shapes used for optimization of dosimeter performance. The various types of optical fiber radiation dosimeters are subsequently reviewed for various applications ranging from medical dosimetry such as in external beam radiotherapy, brachytherapy and diagnostic imaging, as well as in industrial processing and space dosimetry covering a dynamic dose range from mu Gy to kGy. Investigated dosimetric characteristics include reproducibility, fading, dose response, reciprocity between luminescence yield to dose-rate and energy dependence. The review is completed by a brief discussion on limitations and future developments in optical fiber radiation dosimetry.
机译:在本文中,我们审查了高度有前途的二氧化硅玻璃,以掺杂和未掺杂的光纤制成,用于在辐射剂量测定中使用。这里审查的剂量测定技术,通过二氧化硅玻璃中的内在和外在缺陷,聚焦在热致发光(T1),光学刺激的发光(OSL)和辐射发光(RL)中,偶尔引入更熟悉的辐射诱导衰减(RIA)。本综述中的另一个重点是在二氧化硅玻璃光纤辐射剂量计中使用的掺杂剂和改性剂之前报道的各种材料。本文还详细阐述了最近报告的光纤结构,即圆柱形纤维,光子晶纤维和扁平纤维,以及用于优化剂量计性能的尺寸和形状。随后回顾各种类型的光纤辐射剂量计,用于从医疗剂量测定中的各种应用,例如在外部光束放射疗法,近距离放射治疗和诊断成像,以及工业加工和空间剂量测定中,覆盖动态剂量范围从MU GY到KGY。调查的剂量测量特性包括再现性,衰​​落,剂量反应,发光产量与剂量率和能量依赖性之间的互核性。通过介绍光纤辐射剂量测定法的局限性和未来发展,审查。

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