Room-temperature wavelike exciton transport in a van der Waals superatomic semiconductor
成果类型:
Article
署名作者:
Tulyagankhodjaev, Jakhangirkhodja A.; Shih, Petra; Yu, Jessica; Russell, Jake C.; Chica, Daniel G.; Reynoso, Michelle E.; Su, Haowen; Stenor, Athena C.; Roy, Xavier; Berkelbach, Timothy C.; Delor, Milan
署名单位:
Columbia University
刊物名称:
SCIENCE
ISSN/ISSBN:
0036-9433
DOI:
10.1126/science.adf2698
发表日期:
2023-10-27
页码:
438-442
关键词:
high ambipolar mobility
charge-transport
acoustic polaron
carriers
generation
DYNAMICS
phonons
摘要:
The transport of energy and information in semiconductors is limited by scattering between electronic carriers and lattice phonons, resulting in diffusive and lossy transport that curtails all semiconductor technologies. Using Re6Se8Cl2, a van der Waals (vdW) superatomic semiconductor, we demonstrate the formation of acoustic exciton-polarons, an electronic quasiparticle shielded from phonon scattering. We directly imaged polaron transport in Re6Se8Cl2 at room temperature, revealing quasi-ballistic, wavelike propagation sustained for a nanosecond and several micrometers. Shielded polaron transport leads to electronic energy propagation lengths orders of magnitude greater than in other vdW semiconductors, exceeding even silicon over a nanosecond. We propose that, counterintuitively, quasi-flat electronic bands and strong exciton-acoustic phonon coupling are together responsible for the transport properties of Re6Se8Cl2, establishing a path to ballistic room-temperature semiconductors.