A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broad area semiconductor devices is considered. A numerical scheme based on a split-step Fourier method is presented and implemented on a parallel compute cluster. Simulations of the model equations are used for optimizing of existing devices with respect to the emitted beam quality, as well as for creating and testing of novel device design concepts
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edgeemitting semico...
One of the key topics in today's semiconductor laser development activities is to increase the brigh...
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edge-emitting semic...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
A 2 + 1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting br...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
We present a (2+1)-dimensional partial differential equation model for spatial-lateral dynamics of e...
We present a (2+1)-dimensional partial differential equation model for spatial-lateral dynamics of e...
We simulate and analyze how beam quality improves while being amplified in edge emitting broad area ...
We consider a system of 1 + 2 dimensional partial differential equations which describes dynamics of...
We perform a detailed theoretical analysis of the far field narrowing in broad-area edgeemitting sem...
Sequential and parallel algorithms for the simulation of the dynamics of high‐power semiconductor la...
In this work, we discuss an efficient modeling approach for the simulation of Broad Area Laser Diode...
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edge-emitting semic...
We investigate beam shaping in broad area semiconductor amplifiers induced by a periodic modulation ...
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edgeemitting semico...
One of the key topics in today's semiconductor laser development activities is to increase the brigh...
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edge-emitting semic...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
A 2 + 1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting br...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
We present a (2+1)-dimensional partial differential equation model for spatial-lateral dynamics of e...
We present a (2+1)-dimensional partial differential equation model for spatial-lateral dynamics of e...
We simulate and analyze how beam quality improves while being amplified in edge emitting broad area ...
We consider a system of 1 + 2 dimensional partial differential equations which describes dynamics of...
We perform a detailed theoretical analysis of the far field narrowing in broad-area edgeemitting sem...
Sequential and parallel algorithms for the simulation of the dynamics of high‐power semiconductor la...
In this work, we discuss an efficient modeling approach for the simulation of Broad Area Laser Diode...
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edge-emitting semic...
We investigate beam shaping in broad area semiconductor amplifiers induced by a periodic modulation ...
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edgeemitting semico...
One of the key topics in today's semiconductor laser development activities is to increase the brigh...
We extend a 2 (space) + 1 (time)-dimensional traveling wave model for broad-area edge-emitting semic...