Thermal camouflage based on the phase-changing material GST
Тепловая маскировка на основе фазопереходного материала GST
2018-06-21
SCID: 54.1/te2xz7mc
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Ge2Sb2Te5 (GST)dynamic thermal emission controlemissivity tuningphase-changing materialthermal camouflage
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Abstract (AI)
Abstract Camouflage technology has attracted growing interest for many thermal applications. Previous experimental demonstrations of thermal camouflage technology have not adequately explored the ability to continuously camouflage objects either at varying background temperatures or for wide observation angles. In this study, a thermal camouflage device incorporating the phase-changing material Ge 2 Sb 2 Te 5 (GST) is experimentally demonstrated. It has been shown that near-perfect thermal camouflage can be continuously achieved for background temperatures ranging from 30 °C to 50 °C by tuning the emissivity of the device, which is attained by controlling the GST phase change. The thermal camouflage is robust when the observation angle is changed from 0° to 60°. This demonstration paves the way toward dynamic thermal emission control both within the scientific field and for practical applications in thermal information.
Key Findings
1
An experimental thermal camouflage device incorporating phase-changing Ge₂Sb₂Te₅ (GST) was demonstrated.
2
Near-perfect thermal camouflage was continuously achieved across background temperatures from 30 °C to 50 °C.
3
The demonstrated approach enables dynamic thermal emission control for thermal-information applications.
4
The device adapts camouflage by tuning its emissivity through controlled GST phase transitions.
5
Thermal camouflage remained robust as the observation angle varied from 0° to 60°.
Research Object
GST-based thermal camouflage device
Research Subject
Continuous near-perfect thermal camouflage across background temperatures of 30–50 °C and observation angles of 0–60° through phase-change-controlled emissivity tuning
Publication Details
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2018-06-21
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References available in scid.ai4
Control over emissivity of zero-static-power thermal emitters based on phase-changing material GST2016
Radiative cooling of solar absorbers using a visibly transparent photonic crystal thermal blackbody2015
Photonic crystals cause active colour change in chameleons2015
On‐Chip Photonic Memory Elements Employing Phase‐Change Materials2013