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拉盖尔 - 高斯光束强度在光学厚混浊介质中的传播。

Propagation of Laguerre-Gaussian beam intensities through optically thick turbid media.

作者信息

Balasubramaniam Ganesh M, Manavalan Gokul, Arnon Shlomi

机构信息

Department of Electrical and Computer Engineering, Ben-Gurion University of the Negev, Be'er Sheva, 8441405, Israel.

出版信息

Sci Rep. 2025 Jun 5;15(1):19768. doi: 10.1038/s41598-025-03445-2.

Abstract

Recent research has increasingly focused on Laguerre-Gaussian (LG) beams carrying a topological charge (l) due to their demonstrated ability to enhance signal transmission through turbid media. This promising phenomenon has spurred considerable interest in understanding the complex propagation dynamics of such beams, with the goal of optimizing optical systems for highly scattering environments. In this study, we experimentally investigate the transmission characteristics of LG beams with various topological charges as they propagate through a turbid multiple-scattering medium at different depths. By analyzing the resulting transmission data, we calculate the scattering mean free path ([Formula: see text]) for each LG mode and show that [Formula: see text] increases with increasing values of l. Moreover, we show that beams with higher topological charges traverse greater distances within diffuse media while retaining their characteristic donut shape using Monte Carlo simulations. Our findings provide an empirical characterization of the relationship between topological charge and scattering mean free path and also explain the improved transmission with increasing l, at least until optical depths of ~ 40 [Formula: see text], highlighting potential trends that warrant further investigation regarding the potential of applying Laguerre-Gaussian beams for enhanced optical imaging and spectroscopy through highly scattering media.

摘要

最近的研究越来越关注携带拓扑电荷(l)的拉盖尔 - 高斯(LG)光束,因为它们已被证明有能力增强通过浑浊介质的信号传输。这一有前景的现象激发了人们对理解此类光束复杂传播动力学的浓厚兴趣,目标是为高散射环境优化光学系统。在本研究中,我们通过实验研究了具有不同拓扑电荷的LG光束在不同深度穿过浑浊多散射介质时的传输特性。通过分析所得的传输数据,我们计算了每个LG模式的散射平均自由程([公式:见正文]),并表明[公式:见正文]随l值的增加而增加。此外,我们通过蒙特卡罗模拟表明,具有较高拓扑电荷的光束在漫射介质中传播更远的距离,同时保持其特征性的甜甜圈形状。我们的研究结果提供了拓扑电荷与散射平均自由程之间关系的经验表征,并且还解释了随着l增加传输改善的现象,至少直到光学深度约为40 [公式:见正文],突出了一些潜在趋势,这些趋势值得进一步研究将拉盖尔 - 高斯光束应用于通过高散射介质增强光学成像和光谱学的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a31/12141717/e43f7abf0965/41598_2025_3445_Fig1_HTML.jpg

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