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Improved organic semiconductor lasers based on a mixed-order distributed feedback resonator design
117
Citations
30
References
2007
Year
PhotonicsOptical MaterialsOrganic LasersFeedback Resonator DesignEngineeringOrganic ElectronicsOptical PropertiesResonator ConceptPolymer ScienceImproved Resonator DesignSemiconducting PolymerOrganic SemiconductorLaser MaterialConjugated PolymerOrganic Semiconductor LasersThin FilmsOptoelectronicsPolymer Chemistry
The authors present organic semiconductor distributed feedback lasers based on thin films of the conjugated polymer poly[9,9-dioctylfluorene-co-9,9-di(4-methoxy-phenyl)fluorene] and employing an improved resonator design. In order to combine the advantages of first- and second-order distributed feedback resonators, the authors utilize a mixed-order grating design: A second-order Bragg scattering region that provides efficient vertical outcoupling of the laser radiation is surrounded by first-order scattering regions that give rise to strong feedback. By optimizing the film thickness to obtain laser oscillation at the polymer maximum gain wavelength, a very low laser threshold of 45pJ∕pulse (≈36nJ∕cm2) was realized with this resonator concept.
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