In this study, we discuss an efficient modeling approach for the simulation of broad-area laser diodes. Our method is based on folding the longitudinal propagation dimension into time delays which extend to the lateral dimension and to the influence of diffractive terms the idea of mesh decimation as it is discussed in . We compare the results of the dynamics obtained with our improved model that consists of coupled delay algebraic equations with the results of a standard traveling wave description in the cases of straight current stripes as well as in the important configuration of high-power tapered antireflection coated devices. We obtain an excellent agreement and an improvement of the integration time between one and two orders of magn...
One of the key topics in today's semiconductor laser development activities is to increase the brigh...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
By re-expressing of the master equations model of quantum dots (QDs) laser theory by C. Gies et.al (...
In this study, we discuss an efficient modeling approach for the simulation of broad-area laser diod...
The optical power that can be extracted from a semiconductor laser is limited due to catastrophic op...
This manuscript details the use of the rational Chebyshev transform for describing the transverse dy...
We consider a system of 1 + 2 dimensional partial differential equations which describes dynamics of...
A 2 + 1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting br...
This chapter introduces a hierarchy of Traveling wave (TW) models describing nonlinear dynamics in i...
A set of differential equations with distributed delay is derived for modeling of multimode ring las...
A set of differential equations with distributed delay is derived for modeling of multimode ring las...
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...
The simulation of spectral stabilization of broad-area edgeemitting semiconductor diode lasers is pr...
In this work, we introduce a new multi-mode (MM) delay differential equation (DDE) model suited for ...
One of the key topics in today's semiconductor laser development activities is to increase the brigh...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
By re-expressing of the master equations model of quantum dots (QDs) laser theory by C. Gies et.al (...
In this study, we discuss an efficient modeling approach for the simulation of broad-area laser diod...
The optical power that can be extracted from a semiconductor laser is limited due to catastrophic op...
This manuscript details the use of the rational Chebyshev transform for describing the transverse dy...
We consider a system of 1 + 2 dimensional partial differential equations which describes dynamics of...
A 2 + 1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting br...
This chapter introduces a hierarchy of Traveling wave (TW) models describing nonlinear dynamics in i...
A set of differential equations with distributed delay is derived for modeling of multimode ring las...
A set of differential equations with distributed delay is derived for modeling of multimode ring las...
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...
The simulation of spectral stabilization of broad-area edgeemitting semiconductor diode lasers is pr...
In this work, we introduce a new multi-mode (MM) delay differential equation (DDE) model suited for ...
One of the key topics in today's semiconductor laser development activities is to increase the brigh...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
By re-expressing of the master equations model of quantum dots (QDs) laser theory by C. Gies et.al (...