Study on coupling resonance enhancement characteristics of MPs resonance mode in multilayer MIM structure and F-P cavity mode

Zhihui Wei, Hai Liu, Bo Wang, Jian Zhang, Haolong Tang, Qiang Li, Zhenfeng Shen, Haigui Yang, Dongzhi Shan, Yuanhang Zhao, Yi Zhao, Kai Wang, Xiaoyi Wang
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Abstract

Abstract In this paper, we propose a cavity-coupled perfect absorber (CCPA) consisting of a bottom gold layer, a SiO 2 layer, and multilayer MIM (Metal-Insulator-Metal) nanowires. By coupling the Fabry-Pérot (F-P) cavity mode with the magnetic plasmons (MPs) resonance mode in multilayer MIM structure, the MPs resonance in the multilayer MIM structure is enhanced, and leading to increased absorption of the structure. By designing and optimizing the parameters, near-perfect absorption in the mid-infrared wavelengths can be achieved. The positions of the two absorption peaks can be adjusted by changing the width of the nanowires and the thickness of the SiO2 layer, resulting in the formant excitation at any position in the mid-infrared. The full-width at half-maximum (FWHM) of the short-wave peak is only 0.076 µm, and the FWHM of the long-wave peak is only 0.46 µm. The long-wave absorption peak maintains high efficiency and stability even at large incident angles, exhibiting "omnidirectional" characteristics. The tunable mid-infrared emission peak can be matched to the characteristic spectra of gases, making it suitable for infrared radiation sources in gas detection.
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多层MIM结构中MPs共振模式与F-P腔模式耦合共振增强特性研究
摘要本文提出了一种由底层金层、sio2层和多层MIM(金属-绝缘体-金属)纳米线组成的腔耦合完美吸收体(CCPA)。通过将多层MIM结构中的F-P腔模式与磁性等离子体共振模式耦合,增强了多层MIM结构中的磁性等离子体共振模式,增加了结构的吸收。通过对参数的设计和优化,可以实现中红外波段近乎完美的吸收。通过改变纳米线的宽度和SiO2层的厚度,可以调节两个吸收峰的位置,从而在中红外的任意位置产生形成峰激发。短波峰半峰全宽仅为0.076µm,长波峰半峰全宽仅为0.46µm。长波吸收峰即使在大入射角下也保持高效率和稳定性,表现出“全向”特性。可调谐的中红外发射峰可与气体的特征光谱相匹配,适合红外辐射源在气体检测中的应用。
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