Publication | Closed Access
Temperature Tuning of Nonlinear Exciton Processes in Self‐Assembled Oligophenyl Nanofibers under Laser Action
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Citations
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References
2008
Year
Self-assembled Oligophenyl NanofibersEngineeringLaser ScienceNonlinear Exciton ProcessesTemperature TuningLaser DynamicsOptical PropertiesNanofiber LasersNanophotonicsUltrafast LasersMaterials SciencePhotonicsNanotechnologyNon-linear OpticNanofiberLaser PhotochemistryNanomaterialsSelf-assemblyApplied PhysicsSelf‐assembled Oligophenyl Nanofibers
Low-temperature suppression of nonlinear losses leads to improvement in nanosecond lasing threshold of self-assembled oligophenyl nanofibers by two orders of magnitude. Laser dynamics is revealed by time-resolved photoluminescence excited by femtosecond and nanosecond pulses. Strategies are discussed to extend low-threshold operation of nanofiber lasers to room temperature.
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