原文服务方: 地球化学学报(英文)       
摘要:
Due to its ubiquitous occurrence in igneous,metamorphic, and sedimentary rocks and its wide application in geochronology and geochemistry, zircon has become the most widely used accessory mineral in the geological community. Nevertheless, the decay of U and Th causes radiation damage to the zircon structure,resulting in various degrees of metamictization, which can affect the accuracy of U–Pb dates and Hf and O isotope results. If the degree of zircon radiation damage can be quantified, the influence on geochemical analyses can be evaluated, and the results can be corrected more precisely.In this paper, synthetic and natural zircon crystals with different crystallization ages were selected for Raman spectroscopy analysis, cathodoluminescence imaging,and determination of the U and Th concentrations. The results show that Raman FWHM(full width at half bandmaximum) and Raman shift correlate with alpha dose(Da)ofzirconsfollowingtheseequations,FWHM = 44.36(± 2.32) × [1-exp(-2.74 × Da)]-+ 1.7(± 0.19), Raman Shift =-6.53 × Da+ 1007.69.Analysis of synthetic zircon crystals shows that doped REEs(rare earth elements and P) can also lead to an increase in the FWHM. However, this effect can be ignored for natural zircon samples with REE contents at a normal level of hundreds to a few thousand ppm. The FWHM and Raman shift can be used as proxies to measure the degree of zircon radiation damage. Using the updated equations to calculate the latest age when zircon began to accumulate radiation damage, a more accurate and more meaningful‘‘radiation damage age'' can be obtained.
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篇名 Quantification of radiation damage in natural and synthetic zircon by Raman spectroscopy: application to low-temperature thermochronology
来源期刊 地球化学学报(英文) 学科 地球科学
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年,卷(期) 2025,(4) 所属期刊栏目
研究方向 页码范围 89-104
页数 16页 分类号
字数 语种 中文
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地球化学学报(英文)
双月刊
2096-0956
52-1161/P
大16开
贵州省贵阳市观水路46号地球化学研究所
1982-01-03
英文
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