Ultrafast long-range energy transport via light-matter coupling in organic semiconductor films
Applied Physics
2019-09-10 v1 Chemical Physics
Quantum Physics
Abstract
The formation of exciton-polaritons allows the transport of energy over hundreds of nanometres at velocities up to 10^6 m s^-1 in organic semiconductors films in the absence of external cavity structures.
Keywords
Cite
@article{arxiv.1909.03220,
title = {Ultrafast long-range energy transport via light-matter coupling in organic semiconductor films},
author = {Raj Pandya and Richard Y. S. Chen and Qifei Gu and Jooyoung Sung and Christoph Schnedermann and Oluwafemi S. Ojambati and Rohit Chikkaraddy and Jeffrey Gorman and Gianni Jacucci and Olimpia D. Onelli and Tom Willhammar and Duncan N. Johnstone and Sean M. Collins and Paul A. Midgley and Florian Auras and Tomi Baikie and Rahul Jayaprakash and Fabrice Mathevet and Richard Soucek and Matthew Du and Silvia Vignolini and David G Lidzey and Jeremy J. Baumberg and Richard H. Friend and Thierry Barisien and Laurent Legrand and Alex W. Chin and Andrew J. Musser and Joel Yuen-Zhou and Semion K. Saikin and Philipp Kukura and Akshay Rao},
journal= {arXiv preprint arXiv:1909.03220},
year = {2019}
}