光学镊子
光学力
材料科学
光纤
俘获
光学
光子学
纤维
微结构光纤
光电子学
介观物理学
光纤传感器
保偏光纤
物理
生态学
复合材料
生物
量子力学
作者
Wei-Yu Chen,Yanyu Liu,Jelene Antonicole Ngan Kong,Lieber Po-Hung Li,Yu‐Bin Chen,Chia‐Hsiung Cheng,Cheng‐Yang Liu
出处
期刊:Optics Letters
[The Optical Society]
日期:2023-01-30
卷期号:48 (5): 1216-1216
被引量:6
摘要
Trapping and manipulating mesoscopic biological cells with high precision and flexibility are very important for numerous biomedical applications. In particular, a photonic nanojet based on a non-resonance focusing phenomenon can serve as a powerful tool for manipulating red blood cells and tumor cells in blood. In this study, we demonstrate an approach to trap and drive cells using a high-quality photonic nanojet which is produced by a specific microcone-shaped optical-fiber tip. The dynamic chemical etching method is used to fabricate optical-fiber probes with a microcone-shaped tip. Optical forces and potentials exerted on a red blood cell by a microcone-shaped fiber tips are analyzed based on finite-difference time-domain calculations. Optical trapping and driving experiments are done using breast cancer cells and red blood cells. Furthermore, a cell chain is formed by adjusting the magnitude of the optical force. The real-time backscattering intensities of multiple cells are detected, and highly sensitive trapping is achieved. This microcone-shaped optical fiber probe is potentially a powerful device for dynamic cell assembly, optical sorting, and the precise diagnosis of vascular diseases.
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