Beaudette Kathy, Strupler Mathias, Ren Jian, Bouma Brett E, Boudoux Caroline
Appl Opt. 2018 Feb 10;57(5):1110-1118. doi: 10.1364/AO.57.001110.
Double-clad fibers (DCFs) are versatile waveguides supporting a single-mode core surrounded by a multimode inner cladding. DCFs are increasingly used for multimodal biomedical applications, such as imaging or therapy, for which the core is typically used for coherent illumination and the inner cladding, to support a concurrent modality. Proper optimization is, however, critical to ensure high optical performance and requires accurate modeling of coaxial single- and multimode output beams. In this paper, we present an approach based on geometrical optics and radiometry, which provides a simple and efficient modeling tool for designing and optimizing DCF-based systems. A radiometric definition of single- and multimode output beams in terms of irradiance and radiant intensity allows for the modeling of the energy distribution along the beams' propagation. We confirmed the validity of the model through comparison with experimental measurements and demonstrate the use of the model for optimizing a catheter for concurrent OCT and laser coagulation.
双包层光纤(DCF)是一种多功能波导,其单模纤芯被多模内包层环绕。DCF越来越多地用于多模态生物医学应用,如成像或治疗,其中纤芯通常用于相干照明,而内包层则用于支持并发模态。然而,适当的优化对于确保高光学性能至关重要,并且需要对同轴单模和多模输出光束进行精确建模。在本文中,我们提出了一种基于几何光学和辐射度学的方法,该方法为设计和优化基于DCF的系统提供了一种简单而有效的建模工具。根据辐照度和辐射强度对单模和多模输出光束进行辐射度定义,能够对沿光束传播方向的能量分布进行建模。我们通过与实验测量结果进行比较,证实了该模型的有效性,并展示了该模型在优化用于同时进行光学相干断层扫描(OCT)和激光凝固的导管方面的应用。