首页|微纳激光传感:原理与应用

微纳激光传感:原理与应用

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光学微纳谐振腔可具有超高品质因子和极小模式体积,能极大增强光与物质的相互作用,是实现低阈值、窄线宽激光和高精度传感的理想平台.有源谐振腔中光学增益可以补偿谐振模式损耗,从而减小透射谱线宽;在激射状态下,激光阈值曲线斜率明显增加,进而压窄发射谱线宽.因此,当微纳激光器应用于传感领域时,灵敏度和分辨率会得到显著提升,从而降低探测极限.目前,基于不同结构的微纳激光器已被应用于多种物理场检测,包括温度、应力、角速度等,并在气体传感、离子检测、细胞标记等重要生化应用场景中同样展现出广阔的应用潜力.本文介绍了微纳激光的产生机制、传感机制及传感性能优势,梳理了微纳激光传感领域的研究进展,并对该领域的研究趋势进行了展望.
Micro-and nano-laser sensing:Principles and applications
Optical micro-and nano-resonators can significantly enhance the interaction between light and matter due to the ultra-high Q factor and ultra-small mode volume,making them ideal platforms to realize low-threshold and narrow-linewidth lasing,and high-precision sensing.In active resonators,the cavity loss can be compensated by the optical gain,thus to reduce the linewidth of the transmission spectrum.Furthermore,the increasing of the slope of the lasing threshold curve and the narrowing of the spectral linewidth occur simultaneously during the lasing state.As a result,the sensitivity and resolution are improved,and then the detection limit is lowered when micro-and nano-lasers are applied in optical sensing.At present,micro-and nano-lasers with various structures have shown great potential in physical field detection including temperature,stress,and angular velocity,and biochemical sensing,such as gas sensing,ion detection,and cell labeling.This review discusses the generation mechanisms,sensing mechanisms,and sensing performance advantages of micro-and nano-lasers.Then,recent progress of micro-and nano-laser sensing is summarized comprehensively.Finally,the future research trend of micro-and nano-laser sensing is prospected.

micro-and nano-laserslaser sensinglaser gyroscopeslaser labeling in living cells

胡语婵、王文俣、姜博、施雷、张新亮

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华中科技大学武汉光电国家研究中心,武汉 430074

湖北光谷实验室,武汉 430074

微纳激光器 激光传感 激光陀螺 活细胞诱导激光标记

国家重点研发计划国家自然科学基金国家自然科学基金

2021YFB28006049185011511774110

2023

中国科学(物理学 力学 天文学)
中国科学院

中国科学(物理学 力学 天文学)

CSTPCDCSCD北大核心
影响因子:0.644
ISSN:1674-7275
年,卷(期):2023.53(11)
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