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Blue and red thermoluminescence of natural quartz in the temperature region from-196 to 400 degrees C

机译:天然石英在-196至400摄氏度温度范围内的蓝色和红色热致发光

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Quartz samples of three different origins were gamma-irradiated with 20 kGy at room temperature or at the temperature of liquid nitrogen (- 196 degrees C), and analyzed by on-line TL-emission spectrometry over two temperature ranges: above 200 degrees C (high-temperature region) and - 196 to 200 degrees C (low-temperature region). The emission spectra in the high-temperature region could be separated into intense blue TL (BTL) or red TL (RTL) properties. All quartz samples displayed more or less both properties of BTL and RTL in the low temperature region, shifting the BTL-emission spectra towards violet. Particularly, volcanically originated quartz (RTL, Medeshima) showed highly complex BTL and RTL peaks in the low-temperature region, and a stronger simple RTL peak in the high temperature. These complex glow-curve peaks are considered to reflect the presence of many crystal defects and much content of impurities in the volcanically formed quartz. In the glow-curve measurements, Brazilian quartz (quartz-vein origin) gave weak RTL and intense BTL in the low-temperature range, followed by faint emission of BTL in the hightemperature side. On the other hand, the radiation-induced colored (CC) part of a Madagascan crystal rock slice (hydrothermal origin) showed intense BTL together with slight RTL in the low temperatures, followed by strong BTL and appreciable strength of RTL in the high temperatures. The BTL-emission pattern (TL-color image) of a Madagascan slice showed a complementary relationship between irradiations at liquid-nitrogen temperature and at room temperature. To explain these radiation-induced phenomena from quartz, hydrogen radicals and Li+ ions, derived from radiolysis products of OH-related impurities, could operate to eliminate the BTL centers by recombination below the room temperature. (c) 2007 Elsevier Ltd. All rights reserved.
机译:在室温下或在液氮温度下(-196摄氏度)用20 kGyγ辐照三个不同来源的石英样品,并通过在线TL发射光谱法在两个温度范围内进行分析:200摄氏度以上(高温区域)和-196至200摄氏度(低温区域)。高温区域的发射光谱可分为强烈的蓝色TL(BTL)或红色TL(RTL)特性。所有的石英样品在低温区域或多或少地显示了BTL和RTL的特性,使BTL的发射光谱向紫色方向移动。特别是,火山成因的石英(RTL,Medeshima)在低温区域显示高度复杂的BTL和RTL峰,在高温区域显示更强的简单RTL峰。这些复杂的辉光曲线峰被认为反映了火山形成的石英中存在许多晶体缺陷和大量杂质。在辉光曲线测量中,巴西石英(石英脉源)在低温范围内产生弱的RTL和强烈的BTL,随后在高温侧发出微弱的BTL。另一方面,Madagascan晶体岩石切片(水热成因)的辐射诱发彩色(CC)部分显示出强烈的BTL,在低温下显示出轻微的RTL,然后在高温下显示出强大的BTL和显着的RTL强度。马达加斯加切片的BTL发射模式(TL彩色图像)在液氮温度和室温下的辐射之间显示出互补关系。为了解释这些由石英,氢自由基和Li +离子产生的辐射诱发现象,这些现象是由OH相关杂质的放射分解产物产生的,可以通过在室温以下进行重组来消除BTL中心。 (c)2007 Elsevier Ltd.保留所有权利。

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