Sequential and parallel algorithms for the simulation of the dynamics of high‐power semiconductor lasers is presented. The model equations describing the multisection broad–area semiconductors lasers are solved by the finite difference scheme, which is constructed on staggered grids. This nonlinear scheme is linearized applying the predictor‐corrector method. The algorithm is implemented by using the ParSol tool of parallel linear algebra objects. For parallelization we adopt the domain partitioning method, the domain is split along the longitudinal axis. Results of computational experiments are presented, the obtained speed‐up and efficiency of the parallel algorithm agree well with the theoretical scalability analysis. First Published ...
We simulate and analyse a 1D-PDE model describing the dynamics of multisection semiconductor lasers....
We use the traveling wave model for simulating and analyzing nonlinear dynamics of multisection ring...
Traveling wave equations are used to model the dynamics of multisection semiconductor lasers. To per...
Sequential and parallel algorithms for the simulation of the dynamics of high‐power semiconductor la...
A 2 + 1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting br...
We consider a system of 1 + 2 dimensional partial differential equations which describes dynamics of...
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...
High power tapered semiconductor lasers are characterized by a huge amount of structural and geometr...
A hierarchy of 1 (time) + 1 (space) dimensional first-order partial differential equation (traveling...
A hierarchy of 1 (time) + 1 (space) dimensional first-order partial differential equation (traveling...
High power tapered semiconductor lasers are characterized by a huge amount of structural and geometr...
Parallel Hopscotch's and implicit, linearized `-methods have been developed to solve the two--d...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
A time-dependent, two-dimensional model of a semiconductor laser array is numerically studied by mea...
We simulate and analyse a 1D-PDE model describing the dynamics of multisection semiconductor lasers....
We use the traveling wave model for simulating and analyzing nonlinear dynamics of multisection ring...
Traveling wave equations are used to model the dynamics of multisection semiconductor lasers. To per...
Sequential and parallel algorithms for the simulation of the dynamics of high‐power semiconductor la...
A 2 + 1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting br...
We consider a system of 1 + 2 dimensional partial differential equations which describes dynamics of...
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...
High power tapered semiconductor lasers are characterized by a huge amount of structural and geometr...
A hierarchy of 1 (time) + 1 (space) dimensional first-order partial differential equation (traveling...
A hierarchy of 1 (time) + 1 (space) dimensional first-order partial differential equation (traveling...
High power tapered semiconductor lasers are characterized by a huge amount of structural and geometr...
Parallel Hopscotch's and implicit, linearized `-methods have been developed to solve the two--d...
A 2+1 dimensional PDE traveling wave model describing spatial-lateral dynamics of edge-emitting broa...
A time-dependent, two-dimensional model of a semiconductor laser array is numerically studied by mea...
We simulate and analyse a 1D-PDE model describing the dynamics of multisection semiconductor lasers....
We use the traveling wave model for simulating and analyzing nonlinear dynamics of multisection ring...
Traveling wave equations are used to model the dynamics of multisection semiconductor lasers. To per...