红外线的
光子上转换
光电子学
材料科学
光学
噪音(视频)
半导体
非线性系统
热成像
波长
热红外光谱
质量(理念)
可见光谱
非线性光学
伪装
夜视
图像质量
和频产生
纳米尺度
参数统计
图像传感器
作者
Rocio Camacho-Morales,Lei Xu,Nikolay Dimitrov,Lyubomir Stoyanov,Zhonghua Ma,Alexander A. Dreischuh,Hark Hoe H. Tan,Costantino De Angelis,Chennupati Jagadish,Andrey E. Miroshnichenko,Davide Rocco,Valerio F. Gili,Andrei Komar,Mykhaylo Lysevych,Fouad Karouta,Giuseppe Leo,Mohsen Rahmani,Dragomir N. Neshev
出处
期刊:Advanced photonics
[SPIE - International Society for Optical Engineering]
日期:2021-06-15
卷期号:3 (03)
被引量:83
标识
DOI:10.1117/1.ap.3.3.036002
摘要
Infrared imaging is a crucial technique in a multitude of applications, including night vision, autonomous vehicle navigation, optical tomography, and food quality control. Conventional infrared imaging technologies, however, require the use of materials such as narrow bandgap semiconductors, which are sensitive to thermal noise and often require cryogenic cooling. We demonstrate a compact all-optical alternative to perform infrared imaging in a metasurface composed of GaAs semiconductor nanoantennas, using a nonlinear wave-mixing process. We experimentally show the upconversion of short-wave infrared wavelengths via the coherent parametric process of sum-frequency generation. In this process, an infrared image of a target is mixed inside the metasurface with a strong pump beam, translating the image from the infrared to the visible in a nanoscale ultrathin imaging device. Our results open up new opportunities for the development of compact infrared imaging devices with applications in infrared vision and life sciences.
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