In this paper we describe the numerical model of a semiconductor disk laser, developed and implemented in the Photonics Group, Institute of Physics, Lodz University of Technology, Poland. It consists of four strongly interrelated components for: carrier transport, heat flow, material gain and optical phenomena calculations. Combination of these components gives the steady-state self-consistent model which enables a simulation of various aspects of a semiconductor disk laser operation. A numerical analysis of carrier and power losses within the active region of 1.3-μm GaInNAs/GaAs semiconductor disk laser has been carried out using this model
This paper is about finite element analysis of the thermal effects in a 2.3µm gallium antimonide bas...
Efficient operation of semiconductor disk lasers is demonstrated using uncooled and inexpensive 905n...
Transient processes of semiconductor laser were simulated. These processes are best described by the...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mu m semiconductor disk laser (or vertic...
The comprehensive theoretical analyses and experimental studies on semiconductor disk lasers are pre...
Efficient operation of semiconductor disk lasers is demonstrated using uncooled and inexpensive 905n...
The semiconductor disk laser (SDL) takes advantage of the potential for band-gap engineering in semi...
The differential equations for modeling distributed feedback semiconductor lasers are difficult or i...
Efficient operation of semiconductor disk lasers is demonstrated using uncooled and inexpensive 905n...
This paper is about finite element analysis of the thermal effects in a 2.3µm gallium antimonide bas...
Efficient operation of semiconductor disk lasers is demonstrated using uncooled and inexpensive 905n...
Transient processes of semiconductor laser were simulated. These processes are best described by the...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertica...
Finite element analysis is used to study heat flow in a 2.3-mu m semiconductor disk laser (or vertic...
The comprehensive theoretical analyses and experimental studies on semiconductor disk lasers are pre...
Efficient operation of semiconductor disk lasers is demonstrated using uncooled and inexpensive 905n...
The semiconductor disk laser (SDL) takes advantage of the potential for band-gap engineering in semi...
The differential equations for modeling distributed feedback semiconductor lasers are difficult or i...
Efficient operation of semiconductor disk lasers is demonstrated using uncooled and inexpensive 905n...
This paper is about finite element analysis of the thermal effects in a 2.3µm gallium antimonide bas...
Efficient operation of semiconductor disk lasers is demonstrated using uncooled and inexpensive 905n...
Transient processes of semiconductor laser were simulated. These processes are best described by the...