Publication | Open Access
Subwavelength metal-optic semiconductor nanopatch lasers
235
Citations
29
References
2010
Year
Cubic WavelengthsPhotonicsPlasmonicsEngineeringNano-opticsPhysicsSemiconductor LasersApplied PhysicsMid-infrared Laser TechnologyPhotonic DeviceOptoelectronicsMetallodielectric CavitiesNanophotonicsElectro-optics DeviceEffective Mode Volumes
We report on near infrared semiconductor nanopatch lasers with subwavelength-scale physical dimensions (0.019 cubic wavelengths) and effective mode volumes (0.0017 cubic wavelengths). We observe lasing in the two most fundamental optical modes which resemble oscillating electrical and magnetic dipoles. The ultra-small laser volume is achieved with the presence of nanoscale metal patches which suppress electromagnetic radiation into free-space and convert a leaky cavity into a highly-confined subwavelength optical resonator. Such ultra-small lasers with metallodielectric cavities will enable broad applications in data storage, biological sensing, and on-chip optical communication.
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