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Temperature distributions in laser-heated semi-infinite and finite-thickness media with convective surface losses

机译:具有对流表面损耗的激光加热半无限和有限厚度介质中的温度分布

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摘要

The temperature distributions produced within semi-infinite and finite-thickness media heated by a moving laser beam with a Gaussian power-density profile are examined by use of a time-domain method. Convective losses, described by Newton's law of cooling, from the medium surfaces are included. Various medium absorption models are considered. The solutions are given as single integrals with respect to time of simple functions. The resulting expressions have been used to examine the role of surface losses in information storage and medical applications. The role of convective losses in optical recording systems is found to be insignificant. However, for medical applications, combined convective and evaporative surface losses represent an important surface-heat-loss mechanism. # 1998 Optical Society of America OCIS codes: 120.6780, 170.6930, 210.4770, 140.6810.
机译:通过使用时域方法检查在具有高斯功率密度分布的移动激光束加热下的半无限和有限厚度介质中产生的温度分布。包括牛顿冷却定律描述的介质表面对流损失。考虑了各种介质吸收模型。相对于简单函数的时间,解决方案作为单个积分给出。结果表达式已用于检查表面损失在信息存储和医疗应用中的作用。发现对流损耗在光学记录系统中的作用微不足道。但是,对于医疗应用,对流和蒸发表面损失的总和代表了重要的表面热损失机制。 #1998美国光学学会OCIS编码:120.6780、170.6930、210.4770、140.6810。

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