Objectif The perception of the world surrounding us depends on how we illuminate and capture it. For example, our direct observation of high-speed phenomena is limited by the speed of the human visual system. A well known method to visualize fast events is to capture them at very high frame rates with high-speed cameras, and then play the movie in slow-motion, enabling us to understand what happens at short timescales. The ultimate goal of this project is to develop the fastest camera on earth, able not only to visualize the changing morphology and position of an object under investigation, but also to simultaneously capture in depth spectroscopic information in both temporal and spectral domains – all of these at unprecedented speeds, several orders of magnitude faster than the current state of the art. For the first time, this will enable the simultaneous high-speed visualization and the spatio-spectro-temporal investigation of dynamic phenomena, at timescales never before accessible. This will enable us to gain unique insights into very fast transformations such as chemical reactions, phase transitions, laser ablation and other irreversible phenomena in physics, biology and engineering.This project will achieve its ambitious objectives through the creative exploitation of novel semiconductor ultrafast lasers and photonic sampling systems, enabling the high-speed illumination and capture of events in the spatial, temporal and spectral domains. This project will pave the way for completely new insights into high-speed dynamic events, allowing us to open up entirely new perspectives into the behaviour of the world at such timescales. Champ scientifique engineering and technologyelectrical engineering, electronic engineering, information engineeringelectronic engineeringsensorsoptical sensorsnatural sciencesphysical sciencesopticslaser physicsultrafast lasersnatural sciencesphysical scienceselectromagnetism and electronicssemiconductivitynatural scienceschemical sciences Mots‑clés Ultrafast photonics high-speed imaging Programme(s) H2020-EU.1.1. - EXCELLENT SCIENCE - European Research Council (ERC) Main Programme Thème(s) ERC-StG-2014 - ERC Starting Grant Appel à propositions ERC-2014-STG Voir d’autres projets de cet appel Régime de financement ERC-STG - Starting Grant Institution d’accueil HERIOT-WATT UNIVERSITY Contribution nette de l'UE € 1 918 331,29 Adresse Riccarton EH14 4AS Edinburgh Royaume-Uni Voir sur la carte Région Scotland Eastern Scotland Edinburgh Type d’activité Higher or Secondary Education Establishments Liens Contacter l’organisation Opens in new window Site web Opens in new window Participation aux programmes de R&I de l'UE Opens in new window Réseau de collaboration HORIZON Opens in new window Coût total € 1 918 331,29 Bénéficiaires (2) Trier par ordre alphabétique Trier par contribution nette de l'UE Tout développer Tout réduire HERIOT-WATT UNIVERSITY Royaume-Uni Contribution nette de l'UE € 1 918 331,29 Adresse Riccarton EH14 4AS Edinburgh Voir sur la carte Région Scotland Eastern Scotland Edinburgh Type d’activité Higher or Secondary Education Establishments Liens Contacter l’organisation Opens in new window Site web Opens in new window Participation aux programmes de R&I de l'UE Opens in new window Réseau de collaboration HORIZON Opens in new window Coût total € 1 918 331,29 UNIVERSITY OF DUNDEE Participation terminée Royaume-Uni Contribution nette de l'UE € 81 075,71 Adresse Nethergate DD1 4HN Dundee Voir sur la carte Région Scotland Eastern Scotland Angus and Dundee City Type d’activité Higher or Secondary Education Establishments Liens Contacter l’organisation Opens in new window Site web Opens in new window Participation aux programmes de R&I de l'UE Opens in new window Réseau de collaboration HORIZON Opens in new window Coût total € 81 075,71