Lasers are the pillars of modern photonics and sensing. Recent advances in microlasers have demonstrated its extraordinary lasing characteristics suitable for biosensing. However, most lasers utilized lasing spectrum as a detection signal, which can hardly detect or characterize nanoscale structural changes in microcavity. Here the concept of amplified structured light-molecule interactions is introduced to monitor tiny bio-structural changes in a microcavity. Biomimetic liquid crystal droplets with self-assembled lipid monolayers are sandwiched in a Fabry-Pérot cavity, where subtle protein-lipid membrane interactions trigger the topological transformation of output vector beams. By exploiting Amyloid β (Aβ)-lipid membrane interactions as a proof-of-concept, it is demonstrated that vector laser beams can be viewed as a topology of complex laser modes and polarization states. The concept of topological-encoded laser barcodes is therefore developed to reveal dynamic changes of laser modes and Aβ-lipid interactions with different Aβ assembly structures. The findings demonstrate that the topology of vector beams represents significant features of intracavity nano-structural dynamics resulted from structured light-molecule interactions.
Topological Encoded Vector Beams for Monitoring Amyloid-Lipid Interactions in Microcavity.
用于监测微腔中淀粉样蛋白-脂质相互作用的拓扑编码矢量光束
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作者:Gong Chaoyang, Qiao Zhen, Yuan Zhiyi, Huang Shih-Hsiu, Wang Wenjie, Wu Pin Chieh, Chen Yu-Cheng
| 期刊: | Advanced Science | 影响因子: | 14.100 |
| 时间: | 2021 | 起止号: | 2021 May 2; 8(12):2100096 |
| doi: | 10.1002/advs.202100096 | 研究方向: | 免疫/内分泌 |
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