Horie Yu, Arbabi Amir, Arbabi Ehsan, Kamali Seyedeh Mahsa, Faraon Andrei
Opt Express. 2016 May 30;24(11):11677-82. doi: 10.1364/OE.24.011677.
We propose and experimentally demonstrate a planar array of optical bandpass filters composed of low loss dielectric metasurface layers sandwiched between two distributed Bragg reflectors (DBRs). The two DBRs form a Fabry-Pérot resonator whose center wavelength is controlled by the design of the transmissive metasurface layer which functions as a phase shifting element. We demonstrate an array of bandpass filters with spatially varying center wavelengths covering a wide range of operation wavelengths of 250nm around λ = 1550nm (Δλ/λ = 16%). The center wavelengths of each filter are independently controlled only by changing the in-plane geometry of the sandwiched metasurfaces, and the experimentally measured quality factors are larger than 700. The demonstrated filter array can be directly integrated on top of photodetector arrays to realize on-chip high-resolution spectrometers with free-space coupling.
我们提出并通过实验证明了一种平面光学带通滤波器阵列,该阵列由夹在两个分布式布拉格反射器(DBR)之间的低损耗介质超表面层组成。这两个DBR形成一个法布里-珀罗谐振器,其中心波长由用作相移元件的透射超表面层的设计控制。我们展示了一个带通滤波器阵列,其中心波长在空间上变化,覆盖了围绕λ = 1550nm的250nm宽的工作波长范围(Δλ/λ = 16%)。每个滤波器的中心波长仅通过改变夹在中间的超表面的面内几何形状来独立控制,并且实验测量的品质因数大于700。所展示的滤波器阵列可以直接集成在光电探测器阵列之上,以通过自由空间耦合实现片上高分辨率光谱仪。