Gutierrez-Arroyo Aldo, Baudet Emeline, Bodiou Loïc, Lemaitre Jonathan, Hardy Isabelle, Faijan François, Bureau Bruno, Nazabal Virginie, Charrier Joël
Opt Express. 2016 Oct 3;24(20):23109-23117. doi: 10.1364/OE.24.023109.
A selenide integrated platform working in the mid-infrared was designed, fabricated and optically characterized at 7.7 µm. Ge-Sb-Se multilayered structures were deposited by RF magnetron sputtering. Using i-line photolithography and fluorine-based reactive ion etching, ridge waveguides were processed as Y-junction, spiral and S-shape waveguides. Single-mode optical propagation at 7.7 µm was observed by optical near-field imaging and optical propagation losses of 2.5dB/cm are measured. Limits of detection of 14.2 ppm and 1.6 ppm for methane and nitrous oxide, respectively, could be potentially measured by using this platform as an evanescent field sensor. Hence, these technological, experimental and theoretical results represent a first step towards the development of an integrated optical sensor operating in the mid-infrared wavelength range.
设计、制造了一个工作在中红外波段、波长为7.7 µm的硒化物集成平台,并对其进行了光学表征。通过射频磁控溅射沉积了Ge-Sb-Se多层结构。利用i线光刻和氟基反应离子刻蚀工艺,将脊形波导加工成Y形结、螺旋形和S形波导。通过光学近场成像观察到了7.7 µm处的单模光传播,并测量了2.5dB/cm的光传播损耗。利用该平台作为倏逝场传感器,分别对甲烷和一氧化二氮的检测限进行了潜在测量,分别为14.2 ppm和1.6 ppm。因此,这些技术、实验和理论结果代表了朝着开发工作在中红外波长范围内的集成光学传感器迈出的第一步。