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法布里-珀罗腔增强原子级薄二硒化铂的三光子发光

Fabry-Perot cavity enhanced three-photon luminescence of atomically thin platinum diselenide.

作者信息

Han Jing, Wang Yingwei, He Jun, Lu Hua, Li Xiangping, Gu Min, Zhang Yinan

机构信息

Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Institute of Photonics Technology, Jinan University, Guangzhou, 510632, China.

Hunan Key Laboratory for Super-microstructure and Ultrafast Process, School of Physics and Electronics, Central South University, 932 South Lushan Road, Changsha, Hunan 410083, P. R. China.

出版信息

Nanoscale. 2021 May 20;13(19):9031-9038. doi: 10.1039/d1nr00348h.

Abstract

Two-dimensional materials, such as transition metal dichalcogenides (TMDs), exhibit intriguing physical properties that lead to both fundamental research and technology development. The recently emerged platinum diselenide (PtSe2), as a new member of the TMDs, has attracted increasing attention because of its good air stability, large refractive index and high electron mobility. However, being atomically thin significantly hinders its interaction with light, severely limiting the spontaneous or stimulated linear and nonlinear emission. Particularly, its nonlinear up-converted emission has not been fully exploited yet. Here, we experimentally observed the distinct enhancement of nonlinear up-converted luminescence of CVD-grown PtSe2 atomic layers on a SiO2/Si substrate with the assistance of the Fabry-Perot cavity resonance. The laser irradiance dependent luminescence study reveals the three-photon process of this nonlinear emission for the first time. Compared with non-resonant excitation, the luminescence enhancement can be up to six times because of the optical interference induced local field enhancement at the excitation wavelength. Leveraging this three-photon luminescence, nonlinear optical imaging and encryption were demonstrated for exploring information security applications. These results will pave the way for integrating nonlinear optical devices with the PtSe2 2D material.

摘要

二维材料,如过渡金属二硫属化物(TMDs),展现出引人入胜的物理特性,这推动了基础研究和技术发展。最近出现的二硒化铂(PtSe2)作为TMDs的新成员,因其良好的空气稳定性、大折射率和高电子迁移率而受到越来越多的关注。然而,原子级的超薄特性严重阻碍了其与光的相互作用,极大地限制了自发或受激的线性和非线性发射。特别是,其非线性上转换发射尚未得到充分利用。在此,我们通过实验观察到,在法布里-珀罗腔共振的辅助下,生长在SiO2/Si衬底上的化学气相沉积(CVD)法制备的PtSe2原子层的非线性上转换发光有显著增强。激光辐照度相关的发光研究首次揭示了这种非线性发射的三光子过程。与非共振激发相比,由于在激发波长处光学干涉引起的局部场增强,发光增强可达六倍。利用这种三光子发光,展示了用于探索信息安全应用的非线性光学成像和加密。这些结果将为将非线性光学器件与PtSe2二维材料集成铺平道路。

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