Koral Can, Mazaheri Zahra, Andreone Antonello
Department of Physics, University of Naples Federico II, 80126 Naples, Italy.
Naples Unit, National Institute of Nuclear Physics, 80126 Naples, Italy.
Micromachines (Basel). 2022 May 20;13(5):796. doi: 10.3390/mi13050796.
We report the design, fabrication and experimental validation of a THz all-dielectric multi-mode q-plate having a fixed rate of change of the optical axis. The device consists of space-variant birefringent slabs manufactured by 3D printing using melt-extruded Acrylonitrile Butadiene Styrene (ABS). The desired form birefringence is analytically evaluated and experimentally measured by the THz time domain spectroscopy technique. The manufactured q-plate design is characterized using a polarization-sensitive imaging setup. The full electric field spatial maps are acquired from the beam propagating through the q-plate. The device enables the realization of both radial and azimuthal vector beams at discrete frequency intervals by controlling the space-dependent orientation of the ordinary and extraordinary axes in the transverse plane with a multi-mode sequence.
我们报告了一种具有固定光轴变化率的太赫兹全介质多模q波片的设计、制造及实验验证。该器件由使用熔融挤出丙烯腈-丁二烯-苯乙烯(ABS)通过3D打印制造的空间可变双折射平板组成。通过太赫兹时域光谱技术对所需的形式双折射进行了分析评估和实验测量。使用偏振敏感成像装置对制造的q波片设计进行了表征。从通过q波片传播的光束中获取完整的电场空间图。该器件通过多模序列控制横向平面中寻常轴和非寻常轴的空间相关取向,能够在离散频率间隔实现径向和方位角矢量光束。