Dong Xi-Pu, Cheng Jie-Rong, Fan Fei, Xu Shi-Tong, Wang Xiang-Hui, Chang Sheng-Jiang
Opt Express. 2019 Jan 7;27(1):202-211. doi: 10.1364/OE.27.000202.
High-index dielectric metasurfaces are rarely reported around 0.1-0.3 THz, as an extremely large etching depth is needed according to the millimeter-scale wavelength. In this work, we propose an easy solution to sub-THz wideband polarization control by utilizing 3D-printed low-index (n~1.5) metagratings. The metagrating with subwavelength lattice is shown as a very efficient half-wave plate (net polarization conversion of 87%) at 0.14 THz but showing noisy spectrum. The design with superwavelength lattice offers a smooth and wide bandwidth for linear polarization rotation. Study of the mechanism shows that the lattice size slightly above wavelength is a better choice for the low-index metadevice as it maintains high efficiency in the zero diffraction order and wide bandwidth due to the small mode dispersion. Such designs offer a feasible solution especially suitable for sub-THz polarization and phase control, complementary to the existing high-index dielectric and metallic metasurfaces.
由于毫米级波长需要极大的蚀刻深度,因此在0.1 - 0.3太赫兹频段,高折射率介质超表面鲜有报道。在这项工作中,我们提出了一种通过利用3D打印的低折射率(n~1.5)超光栅来实现亚太赫兹宽带偏振控制的简便方法。具有亚波长晶格的超光栅在0.14太赫兹时表现为非常高效的半波片(净偏振转换率为87%),但其光谱存在噪声。具有超波长晶格的设计为线性偏振旋转提供了平滑且宽带的特性。对其机理的研究表明,对于低折射率超器件而言,略高于波长的晶格尺寸是更好的选择,因为它在零衍射级保持了高效率,并且由于模式色散小而具有宽带宽。此类设计提供了一种可行的解决方案,特别适用于亚太赫兹偏振和相位控制,是对现有的高折射率介质和金属超表面的补充。