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Miscible-immiscible transition and nonequilibrium scaling in two-component driven open condensate wires
by
Diehl, Sebastian
, He, Liang
in
Condensates
/ driven-open quantum systems
/ exciton-polariton condensates
/ Excitons
/ Kardar-Parisi-Zhang equation
/ Miscibility
/ miscible-immiscible transition
/ nonequilibrium physics
/ Phase diagrams
/ phase separation
/ Phase transitions
/ Physics
/ Polaritons
/ Variation
2017
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Miscible-immiscible transition and nonequilibrium scaling in two-component driven open condensate wires
by
Diehl, Sebastian
, He, Liang
in
Condensates
/ driven-open quantum systems
/ exciton-polariton condensates
/ Excitons
/ Kardar-Parisi-Zhang equation
/ Miscibility
/ miscible-immiscible transition
/ nonequilibrium physics
/ Phase diagrams
/ phase separation
/ Phase transitions
/ Physics
/ Polaritons
/ Variation
2017
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Do you wish to request the book?
Miscible-immiscible transition and nonequilibrium scaling in two-component driven open condensate wires
by
Diehl, Sebastian
, He, Liang
in
Condensates
/ driven-open quantum systems
/ exciton-polariton condensates
/ Excitons
/ Kardar-Parisi-Zhang equation
/ Miscibility
/ miscible-immiscible transition
/ nonequilibrium physics
/ Phase diagrams
/ phase separation
/ Phase transitions
/ Physics
/ Polaritons
/ Variation
2017
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Miscible-immiscible transition and nonequilibrium scaling in two-component driven open condensate wires
Journal Article
Miscible-immiscible transition and nonequilibrium scaling in two-component driven open condensate wires
2017
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Overview
We investigate the steady state phase diagram of two-component driven open condensates (DOCs) in one dimension. We identify a miscible-immiscible transition which is predominantly driven by gapped density fluctuations and occurs upon increasing the inter-component dissipative coupling. Below the transition in the miscible phase, we find the effective long wavelength dynamics to be described by a two-component Kardar-Parisi-Zhang (KPZ) equation that belongs to the nonequilibrium universality class of the one-dimensional single-component KPZ equation at generic choices of parameters. Our results are relevant for different experimental realizations for two-component DOCs in exciton-polariton systems.
Publisher
IOP Publishing
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