伪装
微波食品加热
传输(电信)
粒子群优化
背景(考古学)
还原(数学)
红外线的
材料科学
粒子(生态学)
计算机科学
光电子学
纳米技术
签名(拓扑)
光学
电子工程
光子学
超材料
透射系数
电磁辐射
严格耦合波分析
微波传输
算法
作者
Juyeong Nam,Injoong Chang,Joon‐Soo Lim,Haneul Woo,Jong‐Gwan Yook,Hyung Hee Cho
出处
期刊:Small
[Wiley]
日期:2023-06-27
卷期号:19 (46): e2302848-e2302848
被引量:24
标识
DOI:10.1002/smll.202302848
摘要
Abstract Metamaterials have the powerful ability to freely control multiband electromagnetic (EM) waves through elaborately designed “artificial atoms” and are hence in the limelight in various fields. Typically, camouflage materials manipulate wave–matter interactions to achieve the desired optical properties, in particular, various techniques are used for multiband camouflage materials in both infrared (IR) and microwave (MW) ranges to overcome the scale difference between these bands. However, in the context of components required for microwave communications, simultaneous control of IR emission and MW transmission is required, which is challenging owing to differences in the wave–matter interactions in these two bands. Herein, the state‐of‐the‐art concept of flexible compatible camouflage metasurface (FCCM) is demonstrated, which can manipulate IR signatures while maintaining MW selective transmission simultaneously. For achieving maximum IR tunability and MW selective transmission, it is performed optimization using the particle swarm optimization (PSO) algorithm. Consequently, the FCCM exhibits compatible camouflage performance with both IR signature reduction and MW selective transmission is demonstrated, with 77.7% IR tunability and 93.8% transmission achieved for a flat FCCM. Furthermore, the FCCM reached the 89.8% IR signature reduction effect even in curved situations.
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