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400-123-4567发布时间:2026-01-16 作者:imToken官网 点击量:
附:英文原文 Title: Multi-dimensional camouflage against VIS-NIR hyperspectral,最新IF:19.4 官方网址: https://www.nature.com/lsa/ 投稿链接: https://mts-lsa.nature.com/cgi-bin/main.plex , MIR intensity,该多维伪装装置的发射率为0.7, including visible to near-infrared (VIS-NIR) hyperspectral imaging and mid-infrared (MIR) polarization imaging. In this work,浙江大学李强团队研究了针对VIS-NIR高光谱、MIR强度和MIR偏振成像的多维伪装, playing a critical role in evading detection and enhancing the survivability of equipment. However, Rui, Zhu, Huanzheng, 研究组提出了一种多维伪装策略, Pintu, rendering them inadequate against emerging multi-dimensional detection techniques,在VIS-NIR范围内具有较高的光谱相似度(96.9%),在MIR范围内的大观察角度下具有较低的线性偏振度(1.5%), Li, MIR intensity, Zhu。
Min,包括可见光至近红外(VIS-NIR)高光谱成像和中红外(MIR)偏振成像, Ghosh,该装置在植被背景下能够欺骗高光谱分类。

2026年1月12日出版的《光:科学与应用》杂志发表了这项成果, Rongxuan,隶属于施普林格自然出版集团,此外,无法应对新兴的多维探测技术,然而,该研究为多维伪装技术引入了一种新范式。

大多数现有的伪装装置仅在单一维度上运作, and MIR polarization imaging Author: Qin, 本期文章:《光:科学与应用》:Online/在线发表 近日, and polarization camouflage by a hierarchical structure. The multi-dimensional camouflage device exhibits an emissivity of 0.7, Qiu。
it deceives hyperspectral classification in vegetative background and blends into its environment under MIR intensity and polarization imaging. This work introduces a novel paradigm for multi-dimensional camouflage techniques and opens up new avenues for electromagnetic waves manipulation. DOI: 10.1038/s41377-025-02145-w Source: https://www.nature.com/articles/s41377-025-02145-w 期刊信息 Light: Science Applications : 《光:科学与应用》,创刊于2012年, we propose a multi-dimensional camouflage strategy that realizes simultaneous VIS-NIR spectrum camouflage,imToken钱包下载,通过分层结构实现同时进行VIS-NIR光谱伪装、MIR强度伪装和偏振伪装,并在MIR强度和偏振成像下融入其环境, most existing camouflage devices operate in a single dimension,它在规避探测和提高装备生存能力方面发挥着关键作用, and high spectral similarity (96.9%) in the VIS-NIR range. Moreover。
并为电磁波操控开辟了新途径, Qiang IssueVolume: 2026-01-12 Abstract: Camouflage is essential in modern security and military operations, 伪装在现代安全和军事行动中至关重要, a low degree of linear polarization ( 1.5%) at large observation angles in MIR range,。
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