论文标题
宽带红外碳 - 纳米管中多个可调双曲线共振
Multiple Tunable Hyperbolic Resonances in Broadband Infrared Carbon-Nanotube Metamaterials
论文作者
论文摘要
使用真空过滤制备的量子纳米管的密集量纳米管是一种新兴的红外纳米光材料。我们报告了多种双曲线等离子体的共振,跨越了中红外的单个共振器,由一致的和密集的碳纳米管制成。在第一个近场扫描光学显微镜(NSOM)成像研究中,我们观察到在基本和高阶谐振频率下观察到独特的深层波长场谱。纳米管超材料的晶圆面积使我们能够将此近场成像与许多谐振阵列的缩放特性进行系统的远场光谱研究。彻底的理论建模与这些测量值一致,并将共振视为双曲波导模式的高阶Fabry-Pérot(FP)共振。纳米管谐振器阵列显示从1.5-10μm的宽带灭绝,在3-5μm大气透明度窗口中通过单个丝带中多种模式共存,可逆切换。支持多种谐振模式的宽带碳纳米管的超材料是超级压缩器,可调热发射器和中红外宽带传感器的有前途的候选者。
Aligned, densely-packed carbon nanotube metamaterials prepared using vacuum filtration are an emerging infrared nanophotonic material. We report multiple hyperbolic plasmon resonances, together spanning the mid-infrared, in individual resonators made from aligned and densely-packed carbon nanotubes. In the first near-field scanning optical microscopy (NSOM) imaging study of nanotube metamaterial resonators, we observe distinct deeply-subwavelength field profiles at the fundamental and higher-order resonant frequencies. The wafer-scale area of the nanotube metamaterials allows us to combine this near-field imaging with a systematic far-field spectroscopic study of the scaling properties of many resonator arrays. Thorough theoretical modeling agrees with these measurements and identifies the resonances as higher-order Fabry-Pérot (FP) resonances of hyperbolic waveguide modes. Nanotube resonator arrays show broadband extinction from 1.5-10 μm and reversibly switchable extinction in the 3-5 μm atmospheric transparency window through the coexistence of multiple modes in individual ribbons. Broadband carbon nanotube metamaterials supporting multiple resonant modes are a promising candidate for ultracompact absorbers, tunable thermal emitters, and broadband sensors in the mid-infrared.