Minasyan Amalya, Trovato Clément, Degert Jérôme, Freysz Eric, Brasselet Etienne, Abraham Emmanuel
Opt Lett. 2017 Jan 1;42(1):41-44. doi: 10.1364/OL.42.000041.
We propose a topological beam-shaping strategy of terahertz (THz) beams using geometric phase elements made of space-variant birefringent slabs. Quasi-monochromatic THz vortex beams are produced and characterized both in amplitude and phase from the reconstructed real-time two-dimensional imaging of the electric field. Nonseparable superpositions of such vortex beams are also obtained and characterized by two-dimensional polarimetric analysis. These results emphasize the versatility of the spin-orbit electromagnetic toolbox to prepare on-demand structured light endowed with polarization-controlled orbital angular momentum content in the THz domain, which should find many uses in future THz technologies.
我们提出了一种利用由空间可变双折射平板制成的几何相位元件对太赫兹(THz)光束进行拓扑光束整形的策略。通过电场的重建实时二维成像,产生了准单色太赫兹涡旋光束,并对其幅度和相位进行了表征。还获得了这种涡旋光束的不可分离叠加,并通过二维偏振分析进行了表征。这些结果强调了自旋轨道电磁工具箱在太赫兹领域制备具有偏振控制轨道角动量含量的按需结构化光的多功能性,这在未来的太赫兹技术中应该会有很多用途。