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Nanosecond Near-Infrared Laser Discoloration of Gamma Irradiated Silicate Glasses

机译:纳秒辐照硅酸盐玻璃的纳秒级近红外激光变色

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Due to its non-crystalline, amorphous structure, glass is particularly susceptible to radiation-induced coloration/discoloration. Oxide glasses reveal a variety of colors depending upon their composition when exposed to high energy radiations such as gamma and X-rays, and the colors induced have been explained in terms of the formation of color centers. These effects can be reversed by heating or upon exposure to light at wavelengths corresponding to the absorption region of the color centers, a process known as discoloration. Laser can be an efficient process for accomplish this in a localized manner. The aim of this work was to study local discoloration of gamma radiation exposed silicate glasses by application of a nanosecond pulses infrared laser beam. Experimental results validated a numerical model and proved the viability of local laser discoloration of gamma ray irradiated silicate glasses. Although there has been much work focusing the creation and destruction of color centers in glasses, to the best of our knowledge, the application of infrared laser radiation in the local annealing of gamma irradiated glasses was for the first time explored.
机译:由于其非晶态,非晶态结构,玻璃特别容易受到辐射诱导的着色/变色。氧化物玻璃在暴露于高能辐射(例如,伽马射线和X射线)时会根据其成分而显示出各种颜色,并且感应到的颜色已根据色心的形成进行了解释。这些影响可以通过加热或暴露于与色心吸收区域相对应的波长的光来逆转,该过程称为变色。激光可以是一种有效的方法,可以以局部方式实现这一目标。这项工作的目的是通过应用纳秒脉冲红外激光束来研究伽玛射线暴露的硅酸盐玻璃的局部变色。实验结果验证了数值模型并证明了伽马射线辐照的硅酸盐玻璃局部激光变色的可行性。尽管已经进行了大量工作来关注玻璃中色中心的创建和破坏,但据我们所知,首次探索了将红外激光辐射应用于伽马辐照玻璃的局部退火中。

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