Zhu Xiya, Fu Jichao, Ding Fei, Jin Yi, Wu Aimin
Center for Optical and Electromagnetic Research, State Key Laboratory for Modern Optical Instrumentation, Zhejiang University, Zijingang Campus, Hangzhou, 310058, China.
Centre for Nano Optics, University of Southern Denmark, Campusvej 55, DK-5230, Odense, Denmark.
Sci Rep. 2018 Oct 15;8(1):15240. doi: 10.1038/s41598-018-33489-6.
Strong optical absorption can be achieved easily based on an array of subwavelength localized resonators. The absorption bandwidth is typically wide since subwavelength metallic resonators are limited by a low quality factor (Q) due to their large material loss and so do dielectric counterparts owing to their weak photon binding. Here, an angle-insensitive narrowband optical absorber is suggested, which consists of subwavelength dielectric cavities buried inside a metal. Within each cavity, a special resonant mode of high Q can be supported, which is absorbed slowly by the metal walls as the electric field is concentrated at the cavity center and leaks slowly into the free space due to the blocking of the top metal film covering the cavities. Such a mode is excited to trap the incident wave in the optical absorption. When low-loss silver is used, one can obtain ultra-narrowband absorption with Q up to 487. At lower optical frequencies, the metal film needs to be punctured so that the incident wave can couple into the cavities effectively. The suggested absorption method may find its promising prospect in thermal radiation, photonic detection, optical sensing, and so on.
基于亚波长局域谐振器阵列可以轻松实现强光学吸收。吸收带宽通常较宽,这是因为亚波长金属谐振器由于材料损耗大而受到低品质因数(Q)的限制,介电谐振器由于光子束缚较弱也存在同样的问题。在此,提出了一种角度不敏感的窄带光学吸收器,它由埋在金属内部的亚波长介电腔组成。在每个腔内,可以支持一种高Q的特殊谐振模式,由于电场集中在腔中心,该模式被金属壁缓慢吸收,并由于覆盖腔的顶部金属膜的阻挡而缓慢泄漏到自由空间。这种模式被激发以在光吸收中捕获入射波。当使用低损耗银时,可以获得Q高达487的超窄带吸收。在较低光频率下,需要在金属膜上打孔,以便入射波能够有效地耦合到腔内。所提出的吸收方法在热辐射、光子检测、光学传感等方面可能具有广阔的前景。