A Planarized Mo/Zns Multilayer Film for Infrared Stealth at High Temperature

10 Pages Posted: 17 Mar 2023

See all articles by Kun Yu

Kun Yu

Henan Normal University

Yaoyi Wang

Henan Normal University

Wei Zhang

Henan Normal University

Peng Shen

Henan Normal University

Mengdan Qian

Henan Normal University

Yufang Liu

Henan Normal University

Kaihua Zhang

Henan Normal University

Abstract

The ability to selectively emit in specific spectral bands, known as spectral selective emission, is highly valuable in thermal photovoltaic systems, infrared stealth, radiation heat dissipation, and other fields. This paper presents a planarized molybdenum/zinc sulfide (Mo/ZnS) multilayer film design to achieve infrared stealth under high temperatures. By utilizing the distinctive radiation characteristics of an ultra-thin Mo layer and impedance matching, selective emission in the infrared band can be achieved. The fabricated multilayer films have low emissivity in the atmospheric window (ε(3-5μm)=0.19; ε(8-14μm)=0.29), but high emissivity in the non-atmospheric window (ε(5-8μm)=0.7). In addition to ensuring infrared stealth performance, the films can also withstand high temperatures up to 723K with good high-temperature resistance. Moreover, the proposed design has several advantages, including structural simplicity, ductility, and ease of mass production. This work could bring added convenience to many applications, including infrared stealth, in the future.

Keywords: spectral selective emission, multilayer film, infrared stealth, high-temperature resistance

Suggested Citation

Yu, Kun and Wang, Yaoyi and Zhang, Wei and Shen, Peng and Qian, Mengdan and Liu, Yufang and Zhang, Kaihua, A Planarized Mo/Zns Multilayer Film for Infrared Stealth at High Temperature. Available at SSRN: https://ssrn.com/abstract=4392161 or http://dx.doi.org/10.2139/ssrn.4392161

Kun Yu

Henan Normal University ( email )

Henan
China

Yaoyi Wang

Henan Normal University ( email )

Henan
China

Wei Zhang

Henan Normal University ( email )

Henan
China

Peng Shen

Henan Normal University ( email )

Henan
China

Mengdan Qian

Henan Normal University ( email )

Henan
China

Yufang Liu

Henan Normal University ( email )

Henan
China

Kaihua Zhang (Contact Author)

Henan Normal University ( email )

Henan
China

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