Observation of exciton polariton condensation in a perovskite lattice at room temperature

被引:3
|
作者
Rui Su
Sanjib Ghosh
Jun Wang
Sheng Liu
Carole Diederichs
Timothy C. H. Liew
Qihua Xiong
机构
[1] Nanyang Technological University,Division of Physics and Applied Physics, School of Physical and Mathematical Sciences
[2] MajuLab,Laboratoire de Physique de l’Ecole Normale Supérieure
[3] International Joint Research Unit UMI 3654,State Key Laboratory of Low
[4] CNRS,Dimensional Quantum Physics and Department of Physics
[5] Université Côte d’Azur,undefined
[6] Sorbonne Université,undefined
[7] National University of Singapore,undefined
[8] Nanyang Technological University,undefined
[9] ENS,undefined
[10] Université PSL,undefined
[11] CNRS,undefined
[12] Sorbonne Université,undefined
[13] Université de Paris,undefined
[14] Tsinghua University,undefined
来源
Nature Physics | 2020年 / 16卷
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摘要
Exciton polaritons, with extremely low effective mass1, are regarded as promising candidates to realize Bose–Einstein condensation in lattices for quantum simulations2 towards room-temperature operations3–8. Along with the condensation, an efficient exciton polariton quantum simulator9 would require a strong lattice with robust polariton trapping as well as strong intersite coupling to allow coherent quantum motion of polaritons within the lattice. A strong lattice can be characterized with a larger forbidden bandgap opening and a larger lattice bandwidth compared with the linewidth. However, exciton polaritons in such strong lattices have only been shown to condense at cryogenic temperatures3–8. Here, we report the observation of non-equilibrium exciton polariton condensation in a one-dimensional strong lead halide perovskite lattice at room temperature. Modulated by deep periodic potentials, the strong lead halide perovskite lattice exhibits a large forbidden bandgap opening up to 13.3 meV and a lattice band up to 8.5 meV wide, which are at least 10 times larger than previous systems. Above a critical density, we observe polariton condensation into py orbital states with long-range spatial coherence at room temperature. Our result opens the route to the implementation of polariton condensates in quantum simulators at room temperature.
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页码:301 / 306
页数:5
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