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Short-pulsed laser transport in two-dimensional scattering media by natural element method

机译:二维散射介质中短脉冲激光传输的自然元法

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摘要

The natural element method (NEM) is extended to solve transient radiative transfer (TRT) in two-dimensional semitransparent media subjected to a collimated short laser irradiation. The least-squares (LS) weighted residuals approach is employed to spatially discretize the transient radiative heat transfer equation. First, for the case of the refractive index matched boundary, LSNEM solutions to TRT are validated by comparison with results reported in the literature. Effects of the incident angle on time-resolved signals of transmittance and reflectance are investigated. Afterward, the accuracy of this algorithm for the case of the refractive index mismatched boundary is studied. Finally, the LSNEM is extended to study the TRT in a two-dimensional semitransparent medium with refractive index discontinuity irradiated by the short pulse laser. The effects of scattering albedo, optical thickness, scattering phase function, and refractive index on transmittance and reflectance signals are investigated. Several interesting trends on the time-resolved signals are observed and analyzed.
机译:扩展了自然元素方法(NEM),以解决二维半透明介质中经过准直短激光辐照的瞬态辐射传递(TRT)。采用最小二乘(LS)加权残差法在空间上离散瞬态辐射热传递方程。首先,对于折射率匹配边界的情况,通过与文献报道的结果进行比较来验证针对TRT的LSNEM解决方案。研究了入射角对时间分辨的透射率和反射率信号的影响。然后,研究了该算法在折射率不匹配边界情况下的准确性。最后,将LSNEM扩展为研究二维半透明介质中的TRT,该介质具有短脉冲激光照射的折射率不连续性。研究了散射反照率,光学厚度,散射相位函数和折射率对透射率和反射率信号的影响。观察和分析了时间分辨信号的一些有趣趋势。

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