Sun Ruizhi, Zhou Peiheng, Ai Wansen, Liu Yanning, Li Ya, Jiang Ruomei, Li Wenxin, Weng Xiaolong, Bi Lei, Deng Longjiang
Opt Express. 2019 Apr 15;27(8):11537-11546. doi: 10.1364/OE.27.011537.
Atmospheric windows play an important role in the field of infrared detection and radiative cooling. In this paper, the development of VO-based metamaterial emitter brings broadband thermal-switching light to mid-infrared atmospheric windows. At room temperature, the emitter radiates light in both 3-5μm and 8-14μm atmospheric windows. At high temperature, the radiation peaks move out of the atmospheric windows and result a strong radiation at 5-8μm. The underlying mechanism relies on the relationship between VO metal-insulator transition (MIT) and resonant absorption modes coupling. Corresponding thermal imaging experiment exhibits two distinct phenomena. One is the observation of unchanged thermal radiation around MIT temperature. The other phenomenon regards the concealment of the emitter from Al background at specific temperatures. These two phenomena show potential application in infrared anti-detection.
大气窗口在红外探测和辐射冷却领域发挥着重要作用。本文中,基于VO的超材料发射器的发展为中红外大气窗口带来了宽带热切换光。在室温下,该发射器在3 - 5μm和8 - 14μm大气窗口均有光辐射。在高温下,辐射峰值移出大气窗口,导致在5 - 8μm处有强烈辐射。其潜在机制依赖于VO金属-绝缘体转变(MIT)与共振吸收模式耦合之间的关系。相应的热成像实验呈现出两种不同现象。一种是在MIT温度附近观察到热辐射不变。另一种现象是在特定温度下发射器相对于铝背景的隐蔽性。这两种现象在红外反探测方面显示出潜在应用。