Polaritons at atomistic resolution on exa-scale parallel resources
Bidragets beskrivning
The observation that the properties of materials can change when placed inside an optical cavity, suggests that cavities may be promising tools for engineering materials. By confining light into smaller volumes, optical cavities increase the interaction between the material and light, which can lead to the formation of new hybrid light-matter states called polaritons. The coherent superposition of excitations in the material and of the cavity not only delocalizes the excitation over many molecules inside the material but also changes their potential energy surface. This project seeks to understand this phenomenon with the help of simulations on supercomputers, as a first step towards leveraging the fascinating aspects of polaritons for new devices.
Visa merStartår
2025
Slutår
2027
Beviljade finansiering
Finansiär
Finlands Akademi
Typ av finansiering
Akademiprojekt med särskild inriktning
Utlysning
Beslutfattare
Suomen akatemian muu päättäjä
18.12.2024
18.12.2024
Övriga uppgifter
Finansieringsbeslutets nummer
364671
Vetenskapsområden
Kemi
Forskningsområden
Fysikaalinen kemia