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Blue thermoluminescence emission of the recently fallen meteorite. (Villalbeto de la Peña, Spain)

机译:最近坠落的陨石的蓝色热致发光发射。 (西班牙维拉贝托德拉佩尼亚)

摘要

This paper reports on the thermal stability of the natural blue thermoluminescence (TL) of a well-characterised meteorite fallen in Villalbeto de la Peña (Palencia, Spain) in January 4, 2004. The meteorite specimen exhibits a complex structure of the spectra emission a wide broad maximum peaked at about 320ºC that can be associated with consecutive breaking linking of bonds (e.g. of Al¿O, Cr¿O, Fe¿O) from lattices of several phases, i.e., olivine, low-Ca pyroxene, plagioclase and redox reactions. The natural TL emission seems to be essentially caused by the Na¿Ca plagioclase as the brighter material inside this L6 chondrite. The thermal stability tests, at different temperatures, confirm a continuous trap distribution with progressive changes in the glow curve shape, intensity and temperature position of the main peak. In consequence, the glow curve analysis methods commonly used for synthetic materials based on singlediscrete traps cannot be applied for this material.
机译:本文报道了2004年1月4日落入Villalbeto de laPeña(西班牙Palencia,西班牙)的一个特征鲜明的陨石的天然蓝色热致发光(TL)的热稳定性。该陨石标本具有复杂的光谱发射结构a宽阔的最大值在约320ºC达到峰值,这可能与多个相(例如橄榄石,低钙辉石,斜长石和氧化还原)的晶格中的键(例如Al?O,Cr?O,Fe?O)的连续断裂连接有关反应。天然TL发射似乎主要是由NaCa斜长石(L6球粒陨石内部的较亮物质)引起的。在不同温度下的热稳定性测试确认了陷阱的连续分布,并且辉光曲线的形状,强度和主峰的温度位置逐渐变化。因此,基于单离散阱的合成材料常用的辉光曲线分析方法无法应用于该材料。

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