Wu Feng, Yu Xi, Panda Abinash, Liu Dejun
Appl Opt. 2022 Sep 10;61(26):7677-7684. doi: 10.1364/AO.470923.
According to the Bragg scattering theory, terahertz (THz) photonic bandgaps (PBGs) in all-dielectric one-dimensional (1-D) photonic crystals (PhCs) are strongly dependent on the incident angle. Such a strongly angle-dependent property of the PBGs not only limits the widths of omnidirectional PBGs, but also causes the strongly angle-dependent property of defect modes and optical Tamm states in multilayer structures containing all-dielectric 1-D PhCs. Until now, ways to achieve a THz angle-independent PBG have been an open problem. Herein, according to the existing phase-variation compensation theory, we achieve a THz angle-independent PBG in a 1-D PhC containing indium antimonide (InSb)-based hyperbolic metamaterials for transverse magnetic polarization. Different from conventional strongly angle-dependent PBGs, the angle-independent PBG remains almost unshifted as the incident angle changes. The relative frequency shifts of the upper and the bottom edges of the angle-independent PBG are only 1.4% and 0.4%, respectively. Besides, the angle-independent property of the PBG is robust against the disturbance of the layer thickness. The proposed 1-D PhC composes only two frequently used materials: silicon (Si) and InSb. Such a Si/InSb multilayer can be fabricated by the current ion-assisted electron beam coating or spin coating techniques. This THz angle-independent PBG would be utilized to design THz omnidirectional filters or absorbers.
根据布拉格散射理论,全介质一维(1-D)光子晶体(PhC)中的太赫兹(THz)光子带隙(PBG)强烈依赖于入射角。PBG的这种强烈的角度依赖性不仅限制了全向PBG的宽度,还导致了包含全介质1-D PhC的多层结构中缺陷模式和光学塔姆态的强烈角度依赖性。到目前为止,实现太赫兹角度无关PBG的方法一直是一个悬而未决的问题。在此,根据现有的相位变化补偿理论,我们在包含基于锑化铟(InSb)的双曲超材料的1-D PhC中实现了横向磁极化的太赫兹角度无关PBG。与传统的强烈角度依赖PBG不同,角度无关PBG在入射角变化时几乎不发生偏移。角度无关PBG的上边缘和下边缘的相对频率偏移分别仅为1.4%和0.4%。此外,PBG的角度无关特性对层厚度的干扰具有鲁棒性。所提出的1-D PhC仅由两种常用材料组成:硅(Si)和InSb。这种Si/InSb多层结构可以通过当前的离子辅助电子束镀膜或旋涂技术制造。这种太赫兹角度无关PBG将被用于设计太赫兹全向滤波器或吸收器。