Madani Abbas, Harazim Stefan M, Bolaños Quiñones Vladimir A, Kleinert Moritz, Finn Andreas, Ghareh Naz Ehsan Saei, Ma Libo, Schmidt Oliver G
Opt Lett. 2017 Feb 1;42(3):486-489. doi: 10.1364/OL.42.000486.
Microtubular optical resonators are monolithically integrated on photonic chips to demonstrate optofluidic functionality. Due to the compact subwavelength-thin tube wall and a well-defined nanogap between polymer photonic waveguides and the microtube, excellent optical coupling with extinction ratios up to 32 dB are observed in the telecommunication relevant wavelength range. For the first time, optofluidic applications of fully on-chip integrated microtubular systems are investigated both by filling the core of the microtube and by the microtube being covered by a liquid droplet. Total shifts over the full free spectral range are observed in response to the presence of the liquid medium in the vicinity of the microtube resonators. This work provides a vertical coupling scheme for optofluidic applications in monolithically integrated so-called "lab-in-a-tube" systems.
微管光学谐振器被单片集成到光子芯片上以展示光流控功能。由于紧凑的亚波长薄壁以及聚合物光子波导与微管之间明确的纳米间隙,在电信相关波长范围内观察到了高达32 dB消光比的优异光耦合。首次通过填充微管芯和用液滴覆盖微管来研究全片上集成微管系统的光流控应用。响应于微管谐振器附近液体介质的存在,在整个自由光谱范围内观察到了总位移。这项工作为单片集成的所谓“管中实验室”系统中的光流控应用提供了一种垂直耦合方案。