Zhou Sihong, Guo Yanming, Zhu Liangwei, Liu Yi, Pan Qinghui, Shuai Yong, Hu Guangwei
Opt Lett. 2023 Aug 15;48(16):4388-4391. doi: 10.1364/OL.497404.
InSbTe (IST), a new non-volatile phase-change material (PCM), promises highly tunable infrared optical properties and offers a distinct path to the significant modulation of its optical scattering fingerprint, suggesting tremendous applications. In this Letter, we demonstrate and optimize a four-layer emitter based on IST, achieving an ultra-wide average emissivity variation of more than 94% in the middle-infrared region (MIR, 3-5 µm). This remarkable emissivity difference can be further continuously modified by changing the structural composition in terms of the amorphous and crystalline states of the IST layers. Based on this continuous programmable emission, the MIR emission characteristics of marble, maple leaf, and blue polyvinyl chloride are successfully imitated together on a desert background, demonstrating the programmable and multi-level MIR optical camouflage capabilities of IST. This work provides a promising platform for continuously modulating emission characteristics and offers a reference for the subsequent application of programmable optical devices.
锑铟碲(IST)是一种新型非易失性相变材料(PCM),具有高度可调节的红外光学特性,并为显著调制其光学散射指纹提供了一条独特途径,显示出巨大的应用潜力。在本信函中,我们展示并优化了一种基于IST的四层发射器,在中红外区域(MIR,3 - 5微米)实现了超过94%的超宽平均发射率变化。通过改变IST层非晶态和晶态的结构组成,这种显著的发射率差异可进一步连续调节。基于这种连续可编程发射,成功地在沙漠背景上共同模拟了大理石、枫叶和蓝色聚氯乙烯的中红外发射特性,展示了IST可编程和多级中红外光学伪装能力。这项工作为连续调制发射特性提供了一个有前景的平台,并为可编程光学器件的后续应用提供了参考。