Zhang Yi, Bai Xueyin, Arias Muñoz Juan, Dai Yunyun, Das Susobhan, Wang Yadong, Sun Zhipei
Department of Electronics and Nanoengineering, Aalto University, 02150, Espoo, Finland.
QTF Centre of Excellence, Department of Applied Physics, Aalto University, 02150, Espoo, Finland.
Light Sci Appl. 2022 Jul 8;11(1):216. doi: 10.1038/s41377-022-00915-4.
Light modulation is of paramount importance for photonics and optoelectronics. Here we report all-optical coherent modulation of third-harmonic generation (THG) with chiral light via the symmetry enabled polarization selectivity. The concept is experimentally validated in monolayer materials (MoS) with modulation depth approaching 100%, ultra-fast modulation speed (<130 fs), and wavelength-independence features. Moreover, the power and polarization of the incident optical beams can be used to tune the output chirality and modulation performance. Major performance of our demonstration reaches the fundamental limits of optical modulation: near-unity modulation depth, instantaneous speed (ultra-fast coherent interaction), compact footprint (atomic thickness), and unlimited operation bandwidth, which hold an ideal optical modulation solution for emerging and future nonlinear optical applications (e.g., interconnection, imaging, computing, and quantum technologies).
光调制对于光子学和光电子学至关重要。在此,我们报告了通过对称性实现的偏振选择性,利用手性光对三次谐波产生(THG)进行全光相干调制。该概念在单层材料(MoS)中得到了实验验证,其调制深度接近100%,调制速度超快(<~130 fs),且具有波长无关特性。此外,入射光束的功率和偏振可用于调节输出手性和调制性能。我们演示的主要性能达到了光调制的基本极限:接近单位的调制深度、瞬时速度(超快相干相互作用)、紧凑的占地面积(原子厚度)和无限的操作带宽,这为新兴和未来的非线性光学应用(如互连、成像、计算和量子技术)提供了理想的光调制解决方案。