Zorin Ivan, Su Rong, Prylepa Andrii, Kilgus Jakob, Brandstetter Markus, Heise Bettina
Opt Express. 2018 Dec 10;26(25):33428-33439. doi: 10.1364/OE.26.033428.
Optical technology in the mid-infrared wavelength range is currently a rapidly developing field initiated by the availability of novel high-power and spatially coherent sources. Non-destructive testing techniques based on these sources are very promising for industrial and medical applications. However, there are still many engineering problems due to the technical challenges and high prices of the optical elements suitable for the mid-infrared region. In this paper, we report the development and performances of the first mid-infrared Fourier-domain optical coherence tomography based on a supercontinuum source and low-cost pyroelectric detector. The system is designed to operate in the spectral region around 4 μm. Experimental results are demonstrated for detections of embedded microstructures in ceramic materials and subsurface oil paint layers.
中红外波长范围内的光学技术目前是一个迅速发展的领域,这是由新型高功率和空间相干光源的出现所引发的。基于这些光源的无损检测技术在工业和医疗应用中非常有前景。然而,由于适用于中红外区域的光学元件存在技术挑战和价格高昂的问题,仍然存在许多工程问题。在本文中,我们报告了基于超连续谱光源和低成本热释电探测器的首个中红外傅里叶域光学相干断层扫描技术的开发和性能。该系统设计用于在4μm左右的光谱区域运行。展示了用于检测陶瓷材料中嵌入的微观结构和地下油漆层的实验结果。