McDonnell Cormac, Deng Junhong, Sideris Symeon, Li Guixin, Ellenbogen Tal
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.
Nano Lett. 2022 Apr 13;22(7):2603-2610. doi: 10.1021/acs.nanolett.1c04135. Epub 2022 Mar 16.
We report the realization of broadband THz plasmonic metagrating emitters for simultaneous beam steering and all-optical linear polarization control. Two types of metagratings are designed and experimentally demonstrated. First, the plasmonic meta-atoms are arranged in a metagrating with a binary phase modulation which results in the nonlinear generation of THz waves to the ±1 diffraction orders, with complete suppression of the zeroth order. Complete tunability of the diffracted THz linear polarization direction is demonstrated through simple rotation of the pump polarization. Then, the concept of lateral phase shift is introduced into the design of the metagratings using interlaced phase gradients. By controlling the spatial shift of the submetagrating, we are able to continuously control the linear polarization states of the generated THz waves. This method results in a higher nonlinear diffraction efficiency relative to binary phase modulation. These functional THz metagratings show exciting promise to meet the challenges associated with the current diverse array of applications utilizing THz technology.
我们报道了用于同时进行光束转向和全光线性偏振控制的宽带太赫兹等离子体超表面光栅发射器的实现。设计并通过实验展示了两种类型的超表面光栅。首先,等离子体超原子以具有二元相位调制的超表面光栅排列,这导致太赫兹波非线性地产生到±1衍射级,同时完全抑制零级。通过简单地旋转泵浦偏振,证明了衍射太赫兹线性偏振方向的完全可调性。然后,利用交错相位梯度将横向相移的概念引入到超表面光栅的设计中。通过控制子超表面光栅的空间偏移,我们能够连续控制所产生太赫兹波的线性偏振态。相对于二元相位调制,这种方法具有更高的非线性衍射效率。这些功能性太赫兹超表面光栅在应对利用太赫兹技术的当前各种不同应用所带来的挑战方面显示出令人兴奋的前景。