Aguila Myrron Albert Callera, Esmenda Joshoua Condicion, Wang Jyh-Yang, Chen Yen-Chun, Lee Teik-Hui, Yang Chi-Yuan, Lin Kung-Hsuan, Chang-Liao Kuei-Shu, Kafanov Sergey, Pashkin Yuri A, Chen Chii-Dong
Department of Engineering and System Science, National Tsing Hua University, Hsinchu 30013, Taiwan.
Nano Science and Technology Program, Taiwan International Graduate Program, Academia Sinica, Taipei 11529, Taiwan.
Nanomaterials (Basel). 2022 Aug 4;12(15):2675. doi: 10.3390/nano12152675.
Nanomechanical resonators made from van der Waals materials (vdW NMRs) provide a new tool for sensing absorbed laser power. The photothermal response of vdW NMRs, quantified from the resonant frequency shifts induced by optical absorption, is enhanced when incorporated in a Fabry-Pérot (FP) interferometer. Along with the enhancement comes the dependence of the photothermal response on NMR displacement, which lacks investigation. Here, we address the knowledge gap by studying electromotively driven niobium diselenide drumheads fabricated on highly reflective substrates. We use a FP-mediated absorptive heating model to explain the measured variations of the photothermal response. The model predicts a higher magnitude and tuning range of photothermal responses on few-layer and monolayer NbSe drumheads, which outperform other clamped vdW drum-type NMRs at a laser wavelength of 532 nm. Further analysis of the model shows that both the magnitude and tuning range of NbSe drumheads scale with thickness, establishing a displacement-based framework for building bolometers using FP-mediated vdW NMRs.
由范德华材料制成的纳米机械谐振器(vdW NMRs)为传感吸收的激光功率提供了一种新工具。vdW NMRs的光热响应通过光吸收引起的共振频率偏移来量化,当将其集成到法布里-珀罗(FP)干涉仪中时会增强。随着这种增强,光热响应会依赖于NMR位移,而这一点缺乏研究。在此,我们通过研究在高反射衬底上制造的电动驱动二硒化铌鼓膜来填补这一知识空白。我们使用FP介导的吸收加热模型来解释所测量的光热响应变化。该模型预测在少层和单层NbSe鼓膜上光热响应具有更高的幅度和调谐范围,在532 nm激光波长下优于其他夹持式vdW鼓型NMRs。对该模型的进一步分析表明,NbSe鼓膜的幅度和调谐范围均随厚度而变化,从而建立了一个基于位移的框架,用于使用FP介导的vdW NMRs构建测辐射热计。