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The PhotoHeatEffect project investigates heat transport and exciton-phonon interactions in nanophotonic structures. By understanding and controlling these phenomena, it aims to improve the performance of light-emitting devices and has potential applications in various fields, including electronics and life sciences.
The PhotoHeatEffect project aims to create a breakthrough in our understanding and ability to control heat transport and exciton-phonon coupling in nanophotonic structures.
Both phenomena generate detrimental effects like local heating and charge carrier escape in current generations of light emitters.
Bridging phononics and photonics will reveal the physics behind such device limitations, hence allowing to develop countermeasures leading to better phononic and photonic designs.
Tailoring the he…
ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE
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