Français

Xi'an Institute of Optics and Fine Mechanics has made new progress in the field of metasurface nonlinear photonics

114
2024-09-27 15:23:50
Voir la traduction

Recently, the Research Group of Nonlinear Photonics Technology and Applications in the State Key Laboratory of Transient Optics and Photonics Technology of Xi'an Institute of Optics and Fine Mechanics has made important progress in the field of super surface nonlinear photonics. Relevant research results were published in the internationally famous journal Nanoscale Horizons. The first author of the paper is Zhang Congfu, a 2021 doctoral student.

The mid infrared band (3-5 μ m) plays a crucial role as an atmospheric window in many fields such as biomedical and environmental monitoring. Traditional mid infrared detection and imaging technology faces many problems such as low detector sensitivity and large size. Nonlinear frequency upconversion technology converts mid infrared signal light into near-infrared or visible light bands, which can achieve high-sensitivity detection using silicon-based detectors with small size and high quantum efficiency, providing a new technological approach for mid infrared detection and imaging. Numerous studies have shown that metasurfaces can enhance the interaction between light and matter in sub wavelength nanostructures, breaking through the phase matching limitations of traditional nonlinear optical parametric processes. However, existing metasurfaces typically rely on narrowband high-quality factor resonances to achieve local field enhancement, which poses significant challenges for the further development of ultra wideband nonlinear frequency conversion technology.

Figure (a) Metasurface structural unit; (b) Dielectric constant curve; (c, d) absorption spectra; (e, f) Localized fields at different wavelengths


Figure (a) 3160 nm; (b) 916 nm;  (c) 710 nm. Distribution of electric field Ez component; (d, e) Upconverted light intensity generated by different signal light and pump light; (f) Upconversion light intensity generated under different signal light intensities

In response to the above issues, the research group proposed a method of using gap plasma mode to achieve mode field overlap and broadband enhancement. By designing hyperbolic metamaterials (HMMs) composed of Au ZnO multilayer structures with triangular pyramid shapes, the ultra wideband nonlinear frequency upconversion technology was theoretically verified for the first time in the 3-5 μ m mid infrared band. The gap plasma mode in HMMs multilayer structure excites high-order narrowband resonance at near-infrared pump light wavelength, while the slow light effect generated by dipole and hyperbolic dispersion achieves ultra wideband near-field enhancement at mid infrared wavelength. The symmetry breaking of the triangular structure localizes these resonance modes at the tip of the structure, which not only enhances the localized field in the dielectric material, but also achieves mode field overlap at different signal and pump wavelengths, significantly enhancing the nonlinear frequency conversion process. Thanks to the slow light effect, manipulating the geometry and materials of the basic units of metasurfaces can adjust the above modes, thereby achieving frequency conversion processes at specific wavelengths. The research results provide new ideas for the development of nonlinear frequency conversion technology based on metasurfaces, and provide technical support for the research of new mid infrared optoelectronic detection systems. It has important application value in the fields of mid infrared detection, imaging, sensing, and communication.

Source: Xi'an Institute of Optics and Fine Mechanics

Recommandations associées
  • Each unit of metamaterials used for simulating optical calculations is smaller than the wavelength of the light they are designed to manipulate

    The new architecture based on metamaterials provides a promising platform for constructing large-scale production and reprogrammable solutions that can perform computational tasks using light.The idea of simulating computers - a device that uses continuous variables instead of zero sum ones - may evoke outdated machinery, from mechanical watches to bomb sight devices used in World War II. But emer...

    2024-03-30
    Voir la traduction
  • Hexconn announces the launch of a new modular 3D laser scanner designed specifically for large-scale surface inspection

    The new Absolute Scanner AS1-XL adopts the same "Shine" technology as its flagship product Absolute Scanner AS1, allowing it to collect clean 3D data from the most challenging surface types at a very high speed.The new scanner has a wider scanning line and is designed specifically for inspecting large surfaces and deep cavities in inspection applications such as aerospace panels, ship propellers, ...

    2023-09-27
    Voir la traduction
  • Significant breakthrough in intelligent spectral environment perception research at Xi'an Institute of Optics and Fine Mechanics

    Recently, the Xi'an Institute of Optics and Fine Mechanics of the Chinese Academy of Sciences has made significant progress in the field of intelligent spectral environmental perception. Relevant research results have been published in the top journal in the field of environmental science, Environmental Science&Technology (Nature Index, 5-Year IF: 11.7), and have been selected as cover papers....

    03-20
    Voir la traduction
  • STREAMLIGHT Upgrade TLR RM Light with Red or Green Laser

    Streamlight, a leading supplier of high-performance lighting and weapon lights/laser aiming equipment, has launched upgraded models of its TLR RM 1 and TLR RM 2 series of lights, each now equipped with an HPL face cap, providing ultra bright beams of up to 1000 lumens and an extended range of up to 22000 candela.The popular TLR RM 1 and TLR RM 2 models are equipped with red or green lasers, both o...

    2024-02-23
    Voir la traduction
  • Silicon Valley giants compete for a new 3D printing space race track

    Recently, Eric Schmidt, former CEO of Google, will take over as CEO of Relativity Space, marking his first CEO position since leaving Google.Relativity Space is known for producing rockets using unusual technologies, including 3D printers, automated robots, and artificial intelligence. In 2023, Relativity Space successfully launched the Terran 1 rocket, proving that its 3D printing technology can ...

    03-24
    Voir la traduction