We study the impact of device parameters, such asinner-aperture diameter and cavity photon lifetime, on thermal rollover mechanisms in 850-nm, oxide-confined, vertical-cavity surface-emitting lasers (VCSELs) designed for high-speed operation. We perform measurements on four different VCSELs of different designs and use our empirical thermal model for calculating the power dissipated with increasing bias currents through various physical processes such as absorption within the cavity, carrier thermalization, carrier leakage, spontaneous carrier recombination, and Joule heating. When reducing the topmirror reflectivity to reduce internal optical absorption loss we find an increase of power dissipation due to carrier leakage. There is therefor...
Vertical-cavity surface-emitting lasers (VCSELs) have been greatly improved and successfully commerc...
This thesis characterizes the size and mirror reflectivity dependent optical loss in 850 nm vertical...
We present the design, fabrication, and performance of our latest generation high-speed oxide-confin...
We study the impact of device parameters, such as inner-aperture diameter and cavity photon lifetime...
We use an empirical model together with experimental measurements for studying mechanisms contributi...
We present an empirical thermal model for VCSELs based on extraction of temperature dependence of ma...
We use an empirical model together with experimental measurements for studying mechanisms contributi...
We investigate the impact of reduced photon lifetime on the static and dynamic performance of high-s...
We investigate the impact of reduced photon lifetime on the static and dynamic performance of high-s...
Abstract—We present a comprehensive numerical model to sim-ulate self-heating effects of oxide-confi...
Experimental data and modeling results are presented for a new type of vertical-cavity surface-emitt...
We present the design, fabrication, and performance of our latest generation high-speed oxide-confin...
In this work, the simulation of the single-mode stability in vertical-cavity surface-emitting lasers...
In this work, the simulation of the 980 nm InGaAs intra-cavity-contacted oxide-confined vertical-cav...
Vertical-cavity surface-emitting lasers (VCSELs) have been greatly improved and successfully commerc...
Vertical-cavity surface-emitting lasers (VCSELs) have been greatly improved and successfully commerc...
This thesis characterizes the size and mirror reflectivity dependent optical loss in 850 nm vertical...
We present the design, fabrication, and performance of our latest generation high-speed oxide-confin...
We study the impact of device parameters, such as inner-aperture diameter and cavity photon lifetime...
We use an empirical model together with experimental measurements for studying mechanisms contributi...
We present an empirical thermal model for VCSELs based on extraction of temperature dependence of ma...
We use an empirical model together with experimental measurements for studying mechanisms contributi...
We investigate the impact of reduced photon lifetime on the static and dynamic performance of high-s...
We investigate the impact of reduced photon lifetime on the static and dynamic performance of high-s...
Abstract—We present a comprehensive numerical model to sim-ulate self-heating effects of oxide-confi...
Experimental data and modeling results are presented for a new type of vertical-cavity surface-emitt...
We present the design, fabrication, and performance of our latest generation high-speed oxide-confin...
In this work, the simulation of the single-mode stability in vertical-cavity surface-emitting lasers...
In this work, the simulation of the 980 nm InGaAs intra-cavity-contacted oxide-confined vertical-cav...
Vertical-cavity surface-emitting lasers (VCSELs) have been greatly improved and successfully commerc...
Vertical-cavity surface-emitting lasers (VCSELs) have been greatly improved and successfully commerc...
This thesis characterizes the size and mirror reflectivity dependent optical loss in 850 nm vertical...
We present the design, fabrication, and performance of our latest generation high-speed oxide-confin...