The paper presents the development of a tool based on a back-propagation artificial neural network to assist in the accurate positioning of the lenses used to collimate the beam from semiconductor laser diodes along the so-called fast axis. After training using a Gaussian beam ray-equivalent model, the network is capable of indicating the tilt, decenter, and defocus of such lenses from the measured field distribution, so the operator can determine the errors with respect to the actual lens position and optimize the diode assembly procedure. An experimental validation using a typical configuration exploited in multi-emitter diode module assembly and fast axis collimating lenses with different focal lengths and numerical apertures is reporte
The paper presents a new expression for determining the beam parameter product of a multi-emitter la...
The goal is to develop an approach to automating the alignment and adjustment of optical measurement...
This report presents the development of a neural network for beam forming. This model uses Back prop...
The paper presents the development of a tool based on a back-propagation artificial neural network t...
A new tool based on artificial neural networks to assist in the accurate positioning of the lenses u...
A new tool based on artificial neural networks to assist in the accurate positioning of the lenses u...
The active alignment of fast axis collimator lenses (FAC) is the most challenging part in the manufa...
Laser diodes and diode laser bars are key components in high power semiconductor lasers and solid st...
A deep neural network (NN) is used to simultaneously detect laser beams in images and measure their ...
The fiber laser market has rocketed by more than 10 % in the last decades and as, a consequence, mul...
The growing demand for high-power laser diode modules for laser-based material processing machines h...
Collimator lens makes rays of semiconductor laser accurately parallel in the laser scanner. The most...
Increasing the number of laser beams that can be coherently combined requires accurate and fast algo...
Despite major progress in developing brilliant laser sources a huge potential for cost reductions ca...
In science and industry, the alignment of beam-shaping optics is usually a manual procedure. Many in...
The paper presents a new expression for determining the beam parameter product of a multi-emitter la...
The goal is to develop an approach to automating the alignment and adjustment of optical measurement...
This report presents the development of a neural network for beam forming. This model uses Back prop...
The paper presents the development of a tool based on a back-propagation artificial neural network t...
A new tool based on artificial neural networks to assist in the accurate positioning of the lenses u...
A new tool based on artificial neural networks to assist in the accurate positioning of the lenses u...
The active alignment of fast axis collimator lenses (FAC) is the most challenging part in the manufa...
Laser diodes and diode laser bars are key components in high power semiconductor lasers and solid st...
A deep neural network (NN) is used to simultaneously detect laser beams in images and measure their ...
The fiber laser market has rocketed by more than 10 % in the last decades and as, a consequence, mul...
The growing demand for high-power laser diode modules for laser-based material processing machines h...
Collimator lens makes rays of semiconductor laser accurately parallel in the laser scanner. The most...
Increasing the number of laser beams that can be coherently combined requires accurate and fast algo...
Despite major progress in developing brilliant laser sources a huge potential for cost reductions ca...
In science and industry, the alignment of beam-shaping optics is usually a manual procedure. Many in...
The paper presents a new expression for determining the beam parameter product of a multi-emitter la...
The goal is to develop an approach to automating the alignment and adjustment of optical measurement...
This report presents the development of a neural network for beam forming. This model uses Back prop...