Haas Julian, Pleyer Michael, Nauschütz Josephine, Koeth Johannes, Nägele Markus, Bibikova Olga, Sakharova Tatiana, Artyushenko Viacheslav, Mizaikoff Boris
Opt Express. 2019 Aug 5;27(16):23059-23066. doi: 10.1364/OE.27.023059.
Laser light sources are routinely applied building blocks in optical sensor technologies. While lasers are emitting at a precisely defined wavelength within narrow emission bands, chem/bio-sensing applications frequently demand multi-wavelength illumination for addressing a series of species. Instead of using broadband radiation sources, it is a viable strategy to efficiently combine the beams emitted from different lasers to maintain the spectral brightness and yet cover extended wavelength regimes. In this study, substrate-integrated hollow waveguides (iHWGs) are reported as a versatile and efficient alternative compared to conventional beam combining concepts, especially for applications in the mid-infrared spectral regime leading to a highly efficient multi-port beam combiner-the iBEAM.
激光光源是光学传感器技术中常用的构建模块。虽然激光器在狭窄的发射带内以精确确定的波长发射,但化学/生物传感应用通常需要多波长照明来检测一系列物质。与使用宽带辐射源不同,将不同激光器发射的光束有效组合以保持光谱亮度并覆盖扩展的波长范围是一种可行的策略。在本研究中,据报道,与传统的光束组合概念相比,衬底集成空心波导(iHWG)是一种通用且高效的替代方案,特别是在中红外光谱区域的应用中,由此产生了一种高效的多端口光束组合器——iBEAM。