Li Jingwen, Zhao Ruqiang, Bi Jiefang, Engarnevis Amin
Appl Opt. 2023 May 10;62(14):3683-3689. doi: 10.1364/AO.488571.
Understanding, detection, and accurate monitoring of particles are of utmost importance in various industrial fields and environmental science. Optical sensors allow for real-time monitoring of particles at the single species level by analyzing the elastically scattered light intensities. Nevertheless, since most laser diodes employed for illuminating the particle generally follow a Gaussian-type intensity distribution, the non-uniform energy distribution across the aerosol channel causes considerable errors in the conversion of the scattered light intensities into the actual particle sizes. In order to achieve uniform illumination of particles across the aerosol channel and improve the particle sizing and classification accuracy, we design and customize a single aspheric lens, which efficiently converts the divergent Gaussian beam profile of a TO packaged laser diode into a one-dimensional flattop beam profile along the fast axis at the desired working distance. A beam uniformity better than 5% has been achieved. Furthermore, we demonstrate a practical sensing application using the designed lens for accurate particle sizing, and an obvious improvement in the accuracy has been achieved compared to that based on off-the-shelf aspheric lenses. The singlet beam homogenizer developed in this work has many appealing features (e.g., high uniformity and energy efficiency, compactness, and low stray light), which is especially relevant for building portable particle sensors in order to address various industrial applications where on-site or remote metrology and classification of particles are required.
在各种工业领域和环境科学中,对颗粒的理解、检测和精确监测至关重要。光学传感器通过分析弹性散射光强度,能够在单物种水平上对颗粒进行实时监测。然而,由于用于照亮颗粒的大多数激光二极管通常遵循高斯型强度分布,气溶胶通道上不均匀的能量分布会在将散射光强度转换为实际颗粒大小时导致相当大的误差。为了实现气溶胶通道上颗粒的均匀照明并提高颗粒尺寸测量和分类的准确性,我们设计并定制了一个单非球面透镜,该透镜在所需工作距离处沿快轴将TO封装激光二极管的发散高斯光束轮廓有效地转换为一维平顶光束轮廓。实现了优于5%的光束均匀性。此外,我们展示了使用所设计透镜进行精确颗粒尺寸测量的实际传感应用,与基于现成非球面透镜的应用相比,精度有了明显提高。这项工作中开发的单光束均匀器具有许多吸引人的特性(例如,高均匀性和能量效率、紧凑性和低杂散光),这对于构建便携式颗粒传感器尤为重要,以便满足各种需要现场或远程计量和颗粒分类的工业应用。