Park Seongjin, Yu Jaeyeon, Boehm Gerhard, Belkin Mikhail A, Lee Jongwon
Department of Electrical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, Republic of Korea.
Walter Schottky Institute, Technical University of Munich, Garching, Germany.
Light Sci Appl. 2024 Jul 17;13(1):169. doi: 10.1038/s41377-024-01517-y.
Nonlinear intersubband polaritonic metasurfaces, which integrate giant nonlinear responses derived from intersubband transitions of multiple quantum wells (MQWs) with plasmonic nanoresonators, not only facilitate efficient frequency conversion at pump intensities on the order of few tens of kW cm but also enable electrical modulation of nonlinear responses at the individual meta-atom level and dynamic beam manipulation. The electrical modulation characteristics of the magnitude and phase of the nonlinear optical response are realized through Stark tuning of the resonant intersubband nonlinearity. In this study, we report, for the first time, experimental implementations of electrical modulation characteristics of mid-infrared third-harmonic generation (THG) using an intersubband polaritonic metasurface based on MQW with electrically tunable third-order nonlinear response. Experimentally, we achieved a 450% modulation depth of the THG signal, 86% suppression of zero-order THG diffraction tuning based on local phase tuning exceeding 180 degrees, and THG beam steering using phase gradients. Our work proposes a new route for electrically tunable flat nonlinear optical elements with versatile functionalities.
非线性子带间极化激元超表面将多个量子阱(MQW)子带间跃迁产生的巨大非线性响应与等离子体纳米谐振器集成在一起,不仅有助于在几十千瓦每平方厘米量级的泵浦强度下实现高效频率转换,还能在单个超原子水平上对非线性响应进行电调制以及实现动态光束操控。非线性光学响应的幅度和相位的电调制特性是通过谐振子带间非线性的斯塔克调谐来实现的。在本研究中,我们首次报道了基于具有电可调三阶非线性响应的MQW的子带间极化激元超表面对中红外三次谐波产生(THG)的电调制特性的实验实现。在实验中,我们实现了THG信号450%的调制深度、基于超过180度的局部相位调谐对零阶THG衍射调谐86%的抑制,以及利用相位梯度实现的THG光束转向。我们的工作为具有多种功能的电可调平面非线性光学元件提出了一条新途径。