Zhang Xiaoqiang, Xu Yong, Hong Bin, Zhang Fan, Wang Anting, Zhao Weisheng
Hefei Innovation Research Institute, School of Integrated Circuit Science and Engineering, Beihang University, Hefei 230013, China.
Anhui High Reliability Chips Engineering Laboratory, Hefei 230013, China.
Nanomaterials (Basel). 2023 Jul 10;13(14):2037. doi: 10.3390/nano13142037.
Similar to optical vortex beams, terahertz (THz) vortex beams (TVBs) also carry orbital angular momentum (OAM). However, little research has been reported on the generation of TVBs. In this paper, based on the detour phase technique, we design a series of spintronic terahertz emitters with a helical Fresnel zone plate (STE-HFZP) to directly generate focused TVBs with topological charges (TCs) of = ±1, ±2 and ±3, respectively. The STE-HFZP is a hybrid THz device composed of a terahertz emitter and a THz lens, and it has a high numerical aperture (NA), achieving subwavelength focal spots. Its focus properties are surveyed systemically through accurate simulations. This STE-HFZP can also generate focused TVBs with higher order TCs. More importantly, the components of the focused electric field with OAM make up the majority of the intensity and have potential applications in the field of THz communications, THz imaging and atom trapping.
与光学涡旋光束类似,太赫兹(THz)涡旋光束(TVBs)也携带轨道角动量(OAM)。然而,关于TVBs产生的研究报道很少。在本文中,基于迂回相位技术,我们设计了一系列带有螺旋菲涅耳波带片的自旋电子太赫兹发射器(STE-HFZP),以直接产生拓扑电荷(TCs)分别为 = ±1、±2和±3的聚焦TVBs。STE-HFZP是一种由太赫兹发射器和太赫兹透镜组成的混合太赫兹器件,具有高数值孔径(NA),可实现亚波长焦斑。通过精确模拟系统地研究了其聚焦特性。这种STE-HFZP还可以产生具有更高阶TCs的聚焦TVBs。更重要的是,具有OAM的聚焦电场分量占强度的大部分,在太赫兹通信、太赫兹成像和原子捕获领域具有潜在应用。