Semmlinger Michael, Zhang Ming, Tseng Ming Lun, Huang Tzu-Ting, Yang Jian, Tsai Din Ping, Nordlander Peter, Halas Naomi J
Research Center for Applied Sciences , Academia Sinica , Taipei 115 , Taiwan.
Department of Physics , National Taiwan University , Taipei 10617 , Taiwan.
Nano Lett. 2019 Dec 11;19(12):8972-8978. doi: 10.1021/acs.nanolett.9b03961. Epub 2019 Nov 13.
Dielectric metasurfaces have recently been shown to provide an excellent platform for the harmonic generation of light due to their low optical absorption and to the strong electromagnetic field enhancement that can be designed into their constituent meta-atoms. Here, we demonstrate vacuum ultraviolet (VUV) third harmonic generation from a specially designed dielectric metasurface consisting of a titanium dioxide (TiO) nanostructure array. The metasurface was designed to enhance the generation of VUV light at a wavelength of 185 nm by tailoring its geometric design parameters to achieve an optical resonance at the fundamental laser wavelength of 555 nm. The metasurface exhibits an enhancement factor of nominally 180 compared to an unpatterned TiO thin film of the same thickness, evidence of strong field enhancement at the fundamental wavelength. Mode analysis reveals that the origin of the enhancement is an anapole resonance near the pump wavelength. This work demonstrates an effective strategy for the compact generation of VUV light that could enable expanded access to this useful region of the electromagnetic spectrum.
由于其低光学吸收以及可设计到其组成元原子中的强电磁场增强特性,介电超表面最近已被证明为光的谐波产生提供了一个出色的平台。在此,我们展示了由二氧化钛(TiO)纳米结构阵列组成的特殊设计的介电超表面产生真空紫外(VUV)三次谐波。通过调整其几何设计参数以在555nm的基激光波长处实现光学共振,该超表面被设计用于增强185nm波长的VUV光的产生。与相同厚度的无图案TiO薄膜相比,该超表面表现出名义上为180的增强因子,这是基波波长处强场增强的证据。模式分析表明,增强的起源是泵浦波长附近的一个anapole共振。这项工作展示了一种紧凑产生VUV光的有效策略,这可能使人们能够更广泛地利用电磁频谱的这一有用区域。