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High Sensitivity Submicron Scale Temperature Sensor Based on Perovskite Nanoplatelet Lasers
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作者 ZHAO Ruofan TAO Jianxun +7 位作者 xi yuying CHEN Jiangzhao JI Ting WANG Wenyan WEN Rong CUI Yanxia CHEN Junsheng LI Guohui 《发光学报》 EI CAS CSCD 北大核心 2024年第9期1511-1520,共10页
Submicron scale temperature sensors are crucial for a range of applications,particularly in micro and na-noscale environments.One promising solution involves the use of active whispering gallery mode(WGM)microresonato... Submicron scale temperature sensors are crucial for a range of applications,particularly in micro and na-noscale environments.One promising solution involves the use of active whispering gallery mode(WGM)microresonators.These resonators can be remotely excited and read out using free-space structures,simplifying the process of sensing.In this study,we present a submicron-scale temperature sensor with a remarkable sensitivity up to 185 pm/℃based on a trian-gular MAPbI3 nanoplatelet(NPL)laser.Notably,as temperature changes,the peak wavelength of the laser line shifts lin-early.This unique characteristic allows for precise temperature sensing by tracking the peak wavelength of the NPL laser.The optical modes are confined within the perovskite NPL,which measures just 85 nm in height,due to total internal reflec-tion.Our NPL laser boasts several key features,including a high Q of~2610 and a low laser threshold of about 19.8μJ·cm^(−2).The combination of exceptional sensitivity and ultra-small size makes our WGM device an ideal candidate for integration into systems that demand compact temperature sensors.This advancement paves the way for significant prog-ress in the development of ultrasmall temperature sensors,opening new possibilities across various fields. 展开更多
关键词 temperature sensor submicron scale perovskite nanoplatelet
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二维钙钛矿激光研究进展 被引量:3
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作者 黄阳 李国辉 +4 位作者 温荣 冯琳 冀婷 郤育莺 崔艳霞 《半导体技术》 CAS 北大核心 2022年第9期677-686,共10页
二维钙钛矿材料不仅具有荧光量子效率高、光吸收系数高和增益系数高等优点,而且相对三维钙钛矿材料还有更好的环境稳定性,在光电器件领域受到了广泛关注。准二维钙钛矿得益于特有的多量子阱结构,具有快速的能量转移能力,使材料发光能力... 二维钙钛矿材料不仅具有荧光量子效率高、光吸收系数高和增益系数高等优点,而且相对三维钙钛矿材料还有更好的环境稳定性,在光电器件领域受到了广泛关注。准二维钙钛矿得益于特有的多量子阱结构,具有快速的能量转移能力,使材料发光能力进一步提高,在激光器和发光二极管等发光器件领域取得了一定突破。首先详细介绍了二维钙钛矿的化学组成和量子阱结构,分别阐述了二维钙钛矿荧光量子产率、可调带隙、电子-声子耦合等性能。然后在总结了二维钙钛矿放大自发辐射机制的基础上,详细介绍了同源和多量子阱结构二维钙钛矿激光的研究进展。最后对二维钙钛矿在激光领域的发展趋势和挑战进行了展望。 展开更多
关键词 二维钙钛矿 量子阱 放大自发辐射(ASE) 激光 谐振腔
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