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Tunable graphene-based infrared reflectance filter

机译:基于可调谐石墨烯的红外反射滤光片

摘要

An actively tunable optical filter can control the amplitude of reflected infrared light. The filter exploits the dependence of the excitation energy of plasmons in a continuous and unpatterned sheet of graphene, on the Fermi-level,which can be controlled by conventional electrostatic gating. An exemplary filter enables simultaneous modification of two distinct spectral bands whose positions are dictated by the device geometry and graphene plasmon dispersion. Within these bands, the reflected amplitude can be varied by over 15% and resonance positions can be shifted by over 90 cm−1. Electromagnetic simulations verify that tuning arises through coupling of incident light to graphene plasmons by a nanoantenna grating structure. Importantly, the tunable range is determined by a combination of graphene properties, device structure, and the surrounding dielectrics, which dictate the plasmon dispersion. Thus, the underlying design is applicable across a broad range of infrared frequencies.
机译:有源可调滤光器可以控制反射红外光的幅度。该滤波器利用了费米能级上连续且无图案的石墨烯片中等离激元的激发能的依赖性,这可以通过常规的静电门控来控制。一种示例性的滤波器能够同时修改两个不同的光谱带,其位置由器件的几何形状和石墨烯等离子体激元色散决定。在这些频带内,反射幅度可以变化超过15%,共振位置可以偏移90 cm − 1 。电磁仿真验证了通过纳米天线光栅结构将入射光耦合到石墨烯等离子体激元而产生的调谐。重要的是,可调范围是由石墨烯性能,器件结构和周围电介质的组合决定的,这些参数决定了等离激元的色散。因此,基础设计适用于广泛的红外频率范围。

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