宽带
红外线的
光电子学
非线性系统
折射率
光学
二次谐波产生
透明度(行为)
相变
超材料
材料科学
物理
计算机科学
工程物理
激光器
计算机安全
量子力学
作者
Fuyong Yue,Riccardo Piccoli,Mikhail Y. Shalaginov,Tian Gu,Kathleen Richardson,Roberto Morandotti,Juejun Hu,Luca Razzari
出处
期刊:Cornell University - arXiv
日期:2020-01-01
标识
DOI:10.48550/arxiv.2008.13332
摘要
The mid-wave infrared (MWIR) spectral region (3-5 {\mu}m) is important to a vast variety of applications in imaging, sensing, spectroscopy, surgery, and optical communications. Efficient third-harmonic generation (THG), converting light from the MWIR range into the near-infrared, a region with mature optical detection and manipulation technologies, offers the opportunity to mitigate a commonly recognized limitation of current MWIR systems. In this work, we present the possibility of boosting THG in the MWIR through a metasurface design. Specifically, we demonstrate a 30-fold enhancement in a highly nonlinear phase change material Ge2Sb2Se4Te1 (GSST), by patterning arrays of subwavelength cylinders supporting a magnetic dipolar resonance. The unprecedented broadband transparency, large refractive index, and remarkably high nonlinear response, together with unique phase-change properties, make GSST-based metasurfaces an appealing solution for reconfigurable and ultra-compact nonlinear devices operating in the MWIR.
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