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Observation of exciton polariton condensation in a perovskite lattice at room temperature
by
Ghosh, Sanjib
, Liu, Sheng
, Su, Rui
, Liew, Timothy C. H.
, Diederichs, Carole
, Xiong, Qihua
, Wang, Jun
in
140/125
/ 639/766/400/2797
/ 639/766/483/3924
/ Atomic
/ Classical and Continuum Physics
/ Complex Systems
/ Condensates
/ Condensation
/ Condensed Matter Physics
/ Cryogenic temperature
/ Energy
/ Energy gap
/ Equilibrium
/ Excitons
/ Hybridization
/ Lattices
/ Lead compounds
/ Letter
/ Mathematical and Computational Physics
/ Metal halides
/ Molecular
/ Optical and Plasma Physics
/ Perovskites
/ Physics
/ Physics and Astronomy
/ Polaritons
/ Room temperature
/ Simulation
/ Simulators
/ Theoretical
2020
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Observation of exciton polariton condensation in a perovskite lattice at room temperature
by
Ghosh, Sanjib
, Liu, Sheng
, Su, Rui
, Liew, Timothy C. H.
, Diederichs, Carole
, Xiong, Qihua
, Wang, Jun
in
140/125
/ 639/766/400/2797
/ 639/766/483/3924
/ Atomic
/ Classical and Continuum Physics
/ Complex Systems
/ Condensates
/ Condensation
/ Condensed Matter Physics
/ Cryogenic temperature
/ Energy
/ Energy gap
/ Equilibrium
/ Excitons
/ Hybridization
/ Lattices
/ Lead compounds
/ Letter
/ Mathematical and Computational Physics
/ Metal halides
/ Molecular
/ Optical and Plasma Physics
/ Perovskites
/ Physics
/ Physics and Astronomy
/ Polaritons
/ Room temperature
/ Simulation
/ Simulators
/ Theoretical
2020
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Observation of exciton polariton condensation in a perovskite lattice at room temperature
by
Ghosh, Sanjib
, Liu, Sheng
, Su, Rui
, Liew, Timothy C. H.
, Diederichs, Carole
, Xiong, Qihua
, Wang, Jun
in
140/125
/ 639/766/400/2797
/ 639/766/483/3924
/ Atomic
/ Classical and Continuum Physics
/ Complex Systems
/ Condensates
/ Condensation
/ Condensed Matter Physics
/ Cryogenic temperature
/ Energy
/ Energy gap
/ Equilibrium
/ Excitons
/ Hybridization
/ Lattices
/ Lead compounds
/ Letter
/ Mathematical and Computational Physics
/ Metal halides
/ Molecular
/ Optical and Plasma Physics
/ Perovskites
/ Physics
/ Physics and Astronomy
/ Polaritons
/ Room temperature
/ Simulation
/ Simulators
/ Theoretical
2020
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Observation of exciton polariton condensation in a perovskite lattice at room temperature
Journal Article
Observation of exciton polariton condensation in a perovskite lattice at room temperature
2020
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Overview
Exciton polaritons, with extremely low effective mass
1
, are regarded as promising candidates to realize Bose–Einstein condensation in lattices for quantum simulations
2
towards room-temperature operations
3
–
8
. Along with the condensation, an efficient exciton polariton quantum simulator
9
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 temperatures
3
–
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
p
y
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.
Non-equilibrium Bose–Einstein condensation of exciton polaritons in chains of lead halide perovskite pillars can occur at room temperature. These condensates have long spatial coherence.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Publishing Group [2005-....]
Subject
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