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Radiation-induced cathodoluminescent signatures in calcite

机译:方解石中的辐射诱导阴极发光特征

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摘要

At ambient temperatures, a permanent change due to neutron irradiation has been identified in the luminescent properties of the common mineral calcite. Calcite is one of many ubiquitous minerals that are known to exhibit luminescence under electron bombardment, a process known as cathodoluminescence (CL). The UV-Visible spectra of individual calcite grains were measured with CL spectroscopy before and after neutron irradiation. Exposure to neutrons causes additional crystal lattice defects (beyond those naturally-occurring) that leave a permanent, readily-measurable CL signature in the 515 nm region of the spectrum. Dose response results following irradiation have been measured and a spectroscopic signature is described that increases proportionately to neutron dose. The CL measurements are complicated by a dependence on the orientation relative to direction of excitation. When taken into account, the total dose to the crystal can be estimated, and possibly even the direction of the neutron source can be determined. This signature could potentially be developed into a nuclear forensics tool to help identify locations where special nuclear materials have been stored.
机译:在环境温度下,中子辐照引起的永久变化已在普通矿物方解石的发光性质中得到确认。方解石是已知在电子轰击下会发光的许多普遍存在的矿物之一,该过程称为阴极发光(CL)。在中子辐照之前和之后,通过CL光谱法测量单个方解石晶粒的UV-可见光谱。暴露于中子会导致其他晶格缺陷(自然缺陷除外),从而在光谱的515 nm区域留下永久的,易于测量的CL特征。已经测量了辐照后的剂量响应结果,并描述了与中子剂量成比例增加的光谱特征。由于依赖于相对于激发方向的取向而使CL测量变得复杂。考虑到这一点,可以估算出晶体的总剂量,甚至可以确定中子源的方向。该签名有可能被开发成核取证工具,以帮助确定存储特殊核材料的位置。

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