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Laser transport through thin scattering layers

机译:激光穿过薄散射层

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摘要

Many modern applications of lasers involve understanding the transport of radiation through thin layers. The interactions of continuous wave and pulsed lasers with skin in dermatological use related to surgery and cosmetic procedures are examples of such. These highly scattering thin layers in skin are best modeled by the Monte Carlo method. However, most traditional Monte Carlo models may inaccurately account for the presence of thin layers. As an example, the very thin epidermis, with its highly absorbing melanin, is known to influence the laser penetration significantly. If the Monte Carlo model is implemented without special features, then the results of the simulation will show incorrect effects of thin layers because the path length of most photons would be significantly larger than the layer thickness. As a result, the computed photon travel path length would simply not feel the presence of the layer. In this paper, we present numerical and algorithmic features for computation of radiation transport through thin layers. It is noted that, while Monte Carlo without special features smears the radiative effect of the layers, the refined technique indicates that layers have a great impact on the absorption of energy, especially if the layer properties are distinctly different from those of the adjacent layers. The results have significant implications in the study of diagnostic and therapeutic applications of lasers in biomedicine and surgery.
机译:激光的许多现代应用涉及了解辐射穿过薄层的传输。在与外科手术和美容程序有关的皮肤病学用途中,连续波和脉冲激光与皮肤的相互作用就是这样的例子。皮肤中这些高度散射的薄层最好通过蒙特卡洛方法进行建模。但是,大多数传统的蒙特卡洛模型可能不准确地说明了薄层的存在。例如,已知非常薄的表皮及其黑色素具有很高的吸收性,可显着影响激光的穿透力。如果在没有特殊功能的情况下实施蒙特卡洛模型,则模拟结果将显示出不正确的薄层效应,因为大多数光子的路径长度将明显大于层厚度。结果,计算出的光子传播路径长度将根本感觉不到该层的存在。在本文中,我们提出了用于计算穿过薄层的辐射传输的数值和算法特征。应当指出,虽然没有特殊特征的蒙特卡洛抹去了层的辐射效应,但改进的技术表明,层对能量的吸收有很大的影响,特别是如果层的性质与相邻层的性质明显不同时。该结果对生物医学和外科手术中激光的诊断和治疗应用研究具有重要意义。

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