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Journal Article All-in-One Multispectral Stealth Device for X-Band Radar, Visible, and Near-Infrared Spectra
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Authors
Jinwoo Ho, Juhyun Park, Jiyoung Oh, Chil Seong Ah, Jae Woo Seo, Heasook Park, Tae-Youb Kim, Sungjoon Lim
Issue Date
2026-04
Citation
Nanophotonics, v.15, no.8, pp.1-12
ISSN
2192-8606
Publisher
Walter de Gruyter
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1002/nap2.70102
Abstract
Multispectral stealth is a critical technology in modern military and security applications. Conventional approaches generally address stealth in only one or two spectral bands—such as radar, visible light, or infrared (IR)—thereby limiting their effectiveness against advanced detection systems. In this study, we present, for the first time, an integrated and dynamically adaptive electrochromic system capable of achieving simultaneous stealth across the radar, near‐infrared (NIR), and visible spectra. This single‐device platform surpasses traditional independent or discrete methods in complexity, efficiency, and real‐time tunability. Our multispectral stealth device employs a vertically integrated electrochromic device (ECD) that unifies stealth functionality across all three spectral domains. Visible and NIR camouflage are realized through voltage‐controlled, real‐time modulation of reflectance, enabled by the electrochromic properties of the ECD and its embedded indium tin oxide (ITO) layers. Radar camouflage is achieved through precisely patterned ITO structures incorporated within the device, effectively suppressing electromagnetic wave reflections. To validate this approach, we performed numerical simulations and experimental characterizations using an X‐band waveguide, confirming consistent and robust multispectral stealth performance. This work represents a significant advancement in multispectral stealth technology by integrating radar, NIR, and visible light camouflage into a single, tunable platform.
Keyword
camouflage, electrochromic device, metamaterial absorber, multispectral stealth
This work is distributed under the term of Creative Commons License (CCL)
(CC BY)
CC BY