Mid–infrared ‘W’ lasers
Open Access
- 15 March 2001
- journal article
- Published by The Royal Society in Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
- Vol. 359 (1780) , 489-503
- https://doi.org/10.1098/rsta.2000.0738
Abstract
We review recent progress in the development of mid–infrared (mid–IR) quantum–well lasers with type–II antimonide ‘W’ active regions. Optically pumped W lasers achieved continuous–wave (CW) operation nearly to room temperature, and CW output powers exceeding 0.5 W per facet at 77 K. Improvements in the differential quantum efficiency were obtained by increasing the effective number of passes of the pump beam through the active region in the optical pumping injection cavity configuration. Near–diffraction–limited beam quality was achieved in the mid–IR using the angled–grating distributed feedback (α–distributed feedback (DFB)) approach with a W active region. Single–longitudinal–mode operation was demonstrated by vertical–cavity surface–emitting lasers emitting at λ = 2.9–3.0 μm. Broadened–waveguide W diode lasers recently operated at room temperature in pulsed mode and up to 195 K CW. A slope efficiency exceeding unity was achieved using the interband cascade laser approach with a W active region.Keywords
This publication has 54 references indexed in Scilit:
- Low-threshold interband cascade lasers with power efficiency exceeding 9%Applied Physics Letters, 2000
- Mid-infrared angled-grating distributed feedback laserApplied Physics Letters, 2000
- Optical-pumping injection cavity (OPIC) mid-IR "W" lasers with high efficiency and low lossIEEE Photonics Technology Letters, 2000
- Continuous-wave operation of λ=3.25 μm broadened-waveguide W quantum-well diode lasers up to T=195 KApplied Physics Letters, 2000
- High-efficiency interband cascade lasers with peak power exceeding 4 W/facetApplied Physics Letters, 1999
- High-temperature continuous-wave 3–6.1 μm “W” lasers with diamond-pressure-bond heat sinkingApplied Physics Letters, 1999
- Thermal characterization of diamond-pressure-bond heat sinking for optically pumped mid-infrared lasersIEEE Journal of Quantum Electronics, 1999
- Above-room-temperature optically pumped midinfrared W lasersApplied Physics Letters, 1998
- Continuous-wave mid-infrared VCSELsIEEE Photonics Technology Letters, 1998
- Sb-based monolithic VCSELoperating near 2.2 µm at room temperatureElectronics Letters, 1998