Publication | Open Access
Optimum gain for plasmonic distributed feedback lasers
17
Citations
62
References
2017
Year
Optical PumpingPhotonicsPlasmonicsGain CoefficientEngineeringPhysicsOptical PropertiesDistributed Feedback LaserRelativistic Laser-matter InteractionApplied PhysicsRandom LasersOptimum GainHigh Lasing ThresholdsSuper-intense LasersOptoelectronicsNanophotonics
Although nanolasers typically have low $Q$ factors and high lasing thresholds, they have been successfully implemented with various gain media. Intuitively, it seems that an increase in the gain coefficient would improve the characteristics of nanolasers. For a plasmonic nanolaser---in particular, a distributed feedback laser---we propose a self-consistent model that takes into account both spontaneous emission and the multimode character of laser generation to show that for a given pumping strength, the gain coefficient has an optimal value at which the radiation intensity is at a maximum and the radiation linewidth is at a minimum.
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