AbstractThermal camouflage, which is used to conceal objects in the infrared vision for confrontation with infrared detection in civilian or military applications, has garnered increasing attraction and interest recently. Compared with conductive thermal camouflage, that is to tune heat conduction to achieve equivalent temperature fields, radiative thermal camouflage, based on emissivity engineering, is more promising and shows much superiority in the pursuit of dynamic camouflage technology when resorting to stimuli-responsive materials. In this paper, we demonstrate the emissivity-engineered radiative metasurface to realize dynamic thermal camouflage functionality via a flying laser heat source on the metal-liquid-crystal-metal (MLCM) pla...
Frequency-Selective Surfaces (FSS) type metasurfaces consist of periodic arrays of antenna elements....
This thesis mainly focuses on thermal metamaterials, including thermal metadevices that can actively...
All substances above zero kelvin temperature emit fluctuating electromagnetic waves due to the rando...
AbstractThermal camouflage, which is used to conceal objects in the infrared vision for confrontatio...
Artificial camouflage surfaces, such as metamaterials, that interact with the electromagnetic (EM) w...
In nature, adaptive coloration has been effectively utilized for concealment and signaling. Various ...
Thermal radiation from a black body increases with the fourth power of absolute temperature (T4 ), a...
An infrared artificial thermochromic material composed of a metamaterial emitter and a bimaterial mi...
International audienceInfrared camouflage based on artificial thermal metasurfaces has recently attr...
In nature, adaptive coloration has been effectively utilized for concealment and signaling. Various ...
With advancements in infrared detection technology, there is a need for fast, switchable infrared ca...
While selective emitter designs can enable passive thermal solutions for cooling and heating, many s...
L’objectif de cette thèse est de réaliser une peau active pour le camouflage de véhicule terrestre à...
The mid-infrared is a technologically important region of the electromagnetic spectrum because it in...
Les techniques de camouflage, mimétisme ou invisibilité ont récemment connu une forte émergence, qui...
Frequency-Selective Surfaces (FSS) type metasurfaces consist of periodic arrays of antenna elements....
This thesis mainly focuses on thermal metamaterials, including thermal metadevices that can actively...
All substances above zero kelvin temperature emit fluctuating electromagnetic waves due to the rando...
AbstractThermal camouflage, which is used to conceal objects in the infrared vision for confrontatio...
Artificial camouflage surfaces, such as metamaterials, that interact with the electromagnetic (EM) w...
In nature, adaptive coloration has been effectively utilized for concealment and signaling. Various ...
Thermal radiation from a black body increases with the fourth power of absolute temperature (T4 ), a...
An infrared artificial thermochromic material composed of a metamaterial emitter and a bimaterial mi...
International audienceInfrared camouflage based on artificial thermal metasurfaces has recently attr...
In nature, adaptive coloration has been effectively utilized for concealment and signaling. Various ...
With advancements in infrared detection technology, there is a need for fast, switchable infrared ca...
While selective emitter designs can enable passive thermal solutions for cooling and heating, many s...
L’objectif de cette thèse est de réaliser une peau active pour le camouflage de véhicule terrestre à...
The mid-infrared is a technologically important region of the electromagnetic spectrum because it in...
Les techniques de camouflage, mimétisme ou invisibilité ont récemment connu une forte émergence, qui...
Frequency-Selective Surfaces (FSS) type metasurfaces consist of periodic arrays of antenna elements....
This thesis mainly focuses on thermal metamaterials, including thermal metadevices that can actively...
All substances above zero kelvin temperature emit fluctuating electromagnetic waves due to the rando...