This study introduces a movable piston-like structure that provides a simple and cost-effective avenue for dynamically tuning thermal radiation. This structure leverages two materials with dissimilar optical responses—graphite and aluminum—to modulate from a state of high reflectance to a state of high absorptance. A cavity is created in the graphite to house an aluminum cylinder, which is displaced to actuate the device. In its raised state, the large aluminum surface area promotes a highly reflective response, while in its lowered state, the expanded graphite surface area and blackbody cavity-like interactions significantly enhance absorptance. By optimizing the area ratio, reflectance tunability of over 30% is achieved for nearly the ent...
Phase light modulator (PLM) by MEMS mirror array operating in a piston-mode motion enables a high-sp...
A new mechanical modulator of laser radiation is proposed. The working principle is based on the spe...
International audienceWe propose in this article a method to conceive radiative coolers that are ref...
Thermal radiation from a black body increases with the fourth power of absolute temperature (T4 ), a...
While selective emitter designs can enable passive thermal solutions for cooling and heating, many s...
The ability to engineer how light interacts with a surface is at the core of the development of mate...
Adaptive and smart systems are growing in popularity as we shift toward personalization as a culture...
We show a new path to endow the optical response of resonant gratings with tunability. Modulation of...
The mid-infrared is a technologically important region of the electromagnetic spectrum because it in...
In systems experiencing high temperature load, especially those under vacuum, radiative heat transfe...
We design and fabricate a randomly controlled metamaterial modulator (RCMM) which can dynamically tu...
We report on optical design and applications of hybrid meso-scale devices and materials that combine...
Research in nanophotonic materials and design is yielding advances that are opening conceptually new...
AbstractThermal camouflage, which is used to conceal objects in the infrared vision for confrontatio...
The ability to control and optimize the interactions between light and matter has much utility in en...
Phase light modulator (PLM) by MEMS mirror array operating in a piston-mode motion enables a high-sp...
A new mechanical modulator of laser radiation is proposed. The working principle is based on the spe...
International audienceWe propose in this article a method to conceive radiative coolers that are ref...
Thermal radiation from a black body increases with the fourth power of absolute temperature (T4 ), a...
While selective emitter designs can enable passive thermal solutions for cooling and heating, many s...
The ability to engineer how light interacts with a surface is at the core of the development of mate...
Adaptive and smart systems are growing in popularity as we shift toward personalization as a culture...
We show a new path to endow the optical response of resonant gratings with tunability. Modulation of...
The mid-infrared is a technologically important region of the electromagnetic spectrum because it in...
In systems experiencing high temperature load, especially those under vacuum, radiative heat transfe...
We design and fabricate a randomly controlled metamaterial modulator (RCMM) which can dynamically tu...
We report on optical design and applications of hybrid meso-scale devices and materials that combine...
Research in nanophotonic materials and design is yielding advances that are opening conceptually new...
AbstractThermal camouflage, which is used to conceal objects in the infrared vision for confrontatio...
The ability to control and optimize the interactions between light and matter has much utility in en...
Phase light modulator (PLM) by MEMS mirror array operating in a piston-mode motion enables a high-sp...
A new mechanical modulator of laser radiation is proposed. The working principle is based on the spe...
International audienceWe propose in this article a method to conceive radiative coolers that are ref...