Zhang Shuai, Liang Ningning, Shi Xiaoyu, Zhao Wenkang, Zhai Tianrui
College of Physics and Optoelectronics, Faculty of Science, Beijing University of Technology, Beijing 100124, China.
College of Materials Science and Engineering, Beijing University of Technology, Beijing 100124, China.
ACS Appl Mater Interfaces. 2021 Sep 29;13(38):45916-45923. doi: 10.1021/acsami.1c14219. Epub 2021 Sep 19.
Drop-based microcavity lasers emerged as a promising tool in modern physics investigation and chemical detection owing to their cost-effective fabrication, high luminescence, and sensitive molecule sensing. However, it is of great challenge to achieve highly directional emission along with high quality () factors via traditional droplet self-assembly behavior of the gain medium on a planar substrate. In this work, a single-mode microcavity laser with directional far-field emission is first proposed via droplet self-assembly 3D-curved microcavities, and simultaneously, acetic acid (AcOH) gas sensing is realized. Trichromatic single-mode lasing in 3D-curved microcavities with distinct organic polymer droplets is constructed on silica fibers via a self-assembly procedure. By regulating the curvature of the substrate, mode selection and directional emission of the lasing action are realized. The measured -factor of the proposed anisotropic 3D-curved active microcavity is ∼20k. Furthermore, on account of the sensitive responsiveness of liquid organic polymers, single-mode laser sensors can be realized by measuring the shift of their lasing modes on exposure to organic vapor. Benefiting from chemical reaction with rhodamine 6G, the AcOH gas sensor displays a short response time. These results may open new insights into drop-based quasi-3D-anisotropic whispering-gallery-mode microcavities to improve the development of lab-in-a-droplet, ranging from a tuneable microcavity laser to a chemical gas sensor.
基于液滴的微腔激光器因其具有成本效益的制造、高发光率和灵敏的分子传感能力,成为现代物理研究和化学检测中一种很有前景的工具。然而,通过增益介质在平面衬底上的传统液滴自组装行为,要实现具有高方向性发射以及高品质()因子是极具挑战性的。在这项工作中,首次通过液滴自组装三维弯曲微腔提出了一种具有定向远场发射的单模微腔激光器,同时实现了醋酸(AcOH)气体传感。通过自组装过程,在二氧化硅纤维上构建了具有不同有机聚合物液滴的三维弯曲微腔中的三色单模激光发射。通过调节衬底的曲率,实现了激光作用的模式选择和定向发射。所提出的各向异性三维弯曲有源微腔的测量品质因数约为20k。此外,由于液态有机聚合物的灵敏响应性,通过测量其在暴露于有机蒸汽时激光模式的偏移,可以实现单模激光传感器。受益于与罗丹明6G的化学反应,AcOH气体传感器显示出较短的响应时间。这些结果可能为基于液滴的准三维各向异性回音壁模式微腔开辟新的见解,以促进从可调谐微腔激光器到化学气体传感器的液滴实验室的发展。