Increasing the brightness of high-power diode lasers is one of the key topics in today's semiconductor laser development activities. When easy and low-cost fabrication is a further requirement, devices based on tapered gain sections are the most promising candidates. In order to optimize the brightness of these diode lasers, the dependence of the linewidth enhancement factor and of the beam quality on the device structure parameters was investigated
High-power spatially single-mode diode lasers at 1.4 - 1.5 µm wavelength are of interest as pump las...
High-brightness laser diode technology is progressing rapidly in response to competitive and evolvin...
High peak power and brightness eye-safe lasers are desired in automotive LIDAR, for example. We addr...
Semiconductor lasers with high beam quality and high optical output power are very attractive for a ...
The development of high-power, high-brightness tapered diode lasers and laser amplifiers is reported...
Tapered high-brightness diode lasers are finding use in a variety of applications today. An increase...
Semiconductor lasers with high beam quality and high optical output power are very attractive for a ...
Semiconductor lasers with high beam quality and high optical output power are very attractive for a ...
In high-power, high-brightness laser diodes, beam filamentation is one of the main physical effects ...
In this study, the authors examine some of the factors affecting the brightness and the beam quality...
High-efficiency tapered diode lasers with ridge-waveguide structure emitting at 976 nm have been rea...
The dependence of the beam quality of tapered laser oscillators and amplifiers on the modal optical ...
During the last few years high power diode laser arrays have become well established for direct mate...
(AlGaIn)(AsSb) ridge-waveguide tapered diode lasers with separately contacted ridge and tapered sect...
Type-I diode lasers based on the (AIGaIn)(AsSb) material family are ideally suited to cover the 2-3 ...
High-power spatially single-mode diode lasers at 1.4 - 1.5 µm wavelength are of interest as pump las...
High-brightness laser diode technology is progressing rapidly in response to competitive and evolvin...
High peak power and brightness eye-safe lasers are desired in automotive LIDAR, for example. We addr...
Semiconductor lasers with high beam quality and high optical output power are very attractive for a ...
The development of high-power, high-brightness tapered diode lasers and laser amplifiers is reported...
Tapered high-brightness diode lasers are finding use in a variety of applications today. An increase...
Semiconductor lasers with high beam quality and high optical output power are very attractive for a ...
Semiconductor lasers with high beam quality and high optical output power are very attractive for a ...
In high-power, high-brightness laser diodes, beam filamentation is one of the main physical effects ...
In this study, the authors examine some of the factors affecting the brightness and the beam quality...
High-efficiency tapered diode lasers with ridge-waveguide structure emitting at 976 nm have been rea...
The dependence of the beam quality of tapered laser oscillators and amplifiers on the modal optical ...
During the last few years high power diode laser arrays have become well established for direct mate...
(AlGaIn)(AsSb) ridge-waveguide tapered diode lasers with separately contacted ridge and tapered sect...
Type-I diode lasers based on the (AIGaIn)(AsSb) material family are ideally suited to cover the 2-3 ...
High-power spatially single-mode diode lasers at 1.4 - 1.5 µm wavelength are of interest as pump las...
High-brightness laser diode technology is progressing rapidly in response to competitive and evolvin...
High peak power and brightness eye-safe lasers are desired in automotive LIDAR, for example. We addr...