An optically pumped semiconductor vertical external cavity surface emitting laser, with high output power and excellent beam quality operating at a wavelength near 1.05 mm, is reported. A transparent diamond heat spreader was used for thermal management of the laser.The gain structure grown by molecular beam epitaxy includes 13 compressively strained InGaAs quantum wells. Maximum output power of 4 W with diffraction-limited beam (M21.15) was achieved using a 2% output coupler and incident pump power of 20 W. It is shown that power scalability is feasible with the presented laser geometry
This thesis is an experimental investigation on the development of an optically pumped vertical-exte...
We present a vertical external-cavity surface-emitting laser operating at 1550 run. The laser compri...
1300-nm, 1550-nm and 1480-nm wavelength, optically-pumped VECSELs based on wafer-fused InAlGaAs/InPA...
An optically pumped semiconductor vertical external cavity surface emitting laser, with high output ...
What is believed to be the first high-power vertical external cavity surface emitting laser (VECSEL)...
A high power optically-pumped vertical-external-cavity surface-emitting laser with a diamond heatspr...
We present an optically pumped 1550-nm vertical-external-cavity surface-emitting laser with improved...
What is believed to be the first high-power vertical external cavity surface emitting laser (VECSEL)...
We present the first microchip vertical external-cavity surface-emitting semiconductor laser operati...
Vertical external cavity semiconductor lasers have emerged as an interesting technology based on cur...
We present the first microchip vertical external-cavity surface-emitting semiconductor laser operati...
What is believed to be the first microchip-format vertical external-cavity surface-emitting laser (V...
Recently multiwatt power levels have been generated from Vertical External-Cavity Surface-Emitting L...
We report on recent advances in the performance of GaSb-based optically-pumped vertical-external-cav...
Abstract—A surface-emitting semiconductor laser has been pas-sively mode locked in an external cavit...
This thesis is an experimental investigation on the development of an optically pumped vertical-exte...
We present a vertical external-cavity surface-emitting laser operating at 1550 run. The laser compri...
1300-nm, 1550-nm and 1480-nm wavelength, optically-pumped VECSELs based on wafer-fused InAlGaAs/InPA...
An optically pumped semiconductor vertical external cavity surface emitting laser, with high output ...
What is believed to be the first high-power vertical external cavity surface emitting laser (VECSEL)...
A high power optically-pumped vertical-external-cavity surface-emitting laser with a diamond heatspr...
We present an optically pumped 1550-nm vertical-external-cavity surface-emitting laser with improved...
What is believed to be the first high-power vertical external cavity surface emitting laser (VECSEL)...
We present the first microchip vertical external-cavity surface-emitting semiconductor laser operati...
Vertical external cavity semiconductor lasers have emerged as an interesting technology based on cur...
We present the first microchip vertical external-cavity surface-emitting semiconductor laser operati...
What is believed to be the first microchip-format vertical external-cavity surface-emitting laser (V...
Recently multiwatt power levels have been generated from Vertical External-Cavity Surface-Emitting L...
We report on recent advances in the performance of GaSb-based optically-pumped vertical-external-cav...
Abstract—A surface-emitting semiconductor laser has been pas-sively mode locked in an external cavit...
This thesis is an experimental investigation on the development of an optically pumped vertical-exte...
We present a vertical external-cavity surface-emitting laser operating at 1550 run. The laser compri...
1300-nm, 1550-nm and 1480-nm wavelength, optically-pumped VECSELs based on wafer-fused InAlGaAs/InPA...