Yang Zhi-Qiang, Chen Juan, Wang Li-Guo, Yang Li-Hong, Li Yao, Wu Zhen-Sen, Gong Lei
School of Photoelectrical Engineering, Xi'an Technological University, shaanxi 710021, China.
School of Physics and Optoelectronic Engineering, Xidian University, Xi'an, shaanxi 710016, China.
Heliyon. 2024 Aug 8;10(16):e36039. doi: 10.1016/j.heliyon.2024.e36039. eCollection 2024 Aug 30.
In order to adjust and detect micro-nano periodic structure optical surface accurately and efficiently, the problem of composite scattering between micro-ellipsoidal periodic structure optical surface and pore defects is studied use the multi-resolution time domain (MRTD) approach. A calculation model is established for the intensity distribution of composite scattering, which is modulated by the micro-ellipsoidal periodic structure optical surface and microdefects. Results are in good agreement with those obtained using CST Microwave Studio software and the finite-different time-domain (FDTD) approach, which demonstrates the effectiveness of the calculation model and method. By combining the field distribution of the micro-ellipsoidal periodic structure optical surface containing microdefects with the optical response at different wavelengths, it is necessary to study the influence of various parameters of the micro-ellipsoidal structure and microdefects on the optical system of metamaterials. The effects of the parameters such as roughness, structure of micro-ellipsoidal unit, defect sizes and buried depths on the composite scattering characteristics are analyzed numerically. The results provide technical support for the fields of functional surface design, ultrasensitive detection, scattering peak orientation and frequency selection.
为了准确、高效地调整和检测微纳周期结构光学表面,采用多分辨率时域(MRTD)方法研究了微椭球周期结构光学表面与孔隙缺陷之间的复合散射问题。建立了由微椭球周期结构光学表面和微缺陷调制的复合散射强度分布计算模型。结果与使用CST微波工作室软件和时域有限差分(FDTD)方法得到的结果吻合良好,证明了计算模型和方法的有效性。通过将含微缺陷的微椭球周期结构光学表面的场分布与不同波长下的光学响应相结合,有必要研究微椭球结构和微缺陷的各种参数对超材料光学系统的影响。数值分析了粗糙度、微椭球单元结构、缺陷尺寸和埋藏深度等参数对复合散射特性的影响。研究结果为功能表面设计、超灵敏检测、散射峰定向和频率选择等领域提供了技术支持。