McDonnell Cormac, Deng Junhong, Sideris Symeon, Ellenbogen Tal, Li Guixin
Department of Physical Electronics, School of Electrical Engineering, Tel-Aviv University, 6997801, Tel Aviv, Israel.
Center for Light-Matter Interaction, Tel-Aviv University, 6779801, Tel-Aviv, Israel.
Nat Commun. 2021 Jan 4;12(1):30. doi: 10.1038/s41467-020-20283-0.
Recent advances in the science and technology of THz waves show promise for a wide variety of important applications in material inspection, imaging, and biomedical science amongst others. However, this promise is impeded by the lack of sufficiently functional THz emitters. Here, we introduce broadband THz emitters based on Pancharatnam-Berry phase nonlinear metasurfaces, which exhibit unique optical functionalities. Using these new emitters, we experimentally demonstrate tunable linear polarization of broadband single cycle THz pulses, the splitting of spin states and THz frequencies in the spatial domain, and the generation of few-cycle pulses with temporal polarization dispersion. Finally, we apply the ability of spin control of THz waves to demonstrate circular dichroism spectroscopy of amino acids. Altogether, we achieve nanoscale and all-optical control over the phase and polarization states of the emitted THz waves.
太赫兹波科学技术的最新进展显示出在材料检测、成像以及生物医学等众多重要应用方面的潜力。然而,这种潜力因缺乏功能足够强大的太赫兹发射器而受到阻碍。在此,我们介绍基于潘查拉特纳姆 - 贝里相位非线性超表面的宽带太赫兹发射器,其展现出独特的光学功能。使用这些新型发射器,我们通过实验证明了宽带单周期太赫兹脉冲的可调线性极化、自旋态在空间域的分裂以及太赫兹频率的分裂,以及具有时间极化色散的少周期脉冲的产生。最后,我们应用太赫兹波的自旋控制能力来展示氨基酸的圆二色光谱。总之,我们实现了对发射太赫兹波的相位和极化态的纳米级全光控制。