The fabrication of selective emitters by laser processing has attracted the interest of researchers in recent years. However, narrow foci of Gaussian laser beams limit the throughput and feature an inhomogeneous intensity distribution on the wafer. The use of beam shaping can eliminate this setback. A single laser system delivering <;70 Watt to the wafer is already sufficient to achieve short processing times per wafer. The feasibility of a laser system for a selective laser doping process from PSG is investigated and the potential of eligible beam shaping is assessed. Adequate sheet resistances with a good homogeneity and process stability can be achieved, with minor impact to random pyramid surfaces and no measureable degradation of the m...
Fulltext: Because of the asymmetric emission characteristics of high-power diode laser bars, beam sh...
The intensity distribution of a laser beam has a high impact on laser processing applications. In ma...
In this paper a novel process for a mask-free technology to manufacture selective emitter structures...
To overcome limitations in efficiency originating from the front side of a crystalline silicon solar...
Industrial, military, medical, and research and development applications of lasers frequently requir...
One of the most promising methods to improve the efficiency of crystalline solar cells is the implem...
Industrial, military, medical, and research and development applications of lasers frequently requir...
For most laser hardening industrial applications, CO laser with power in the range 1-10 kW are used....
Since the power of continuous wave laser sources have reached one kilowatt, beam shaping is an impor...
A method for converting single mode Gaussian beams into beams with uniform irradiance profiles is de...
Many laser material processing applications require an optimized beam profile, e.g., ring shape or T...
The performance of laser machining systems can often be improved by adjusting the intensity profile ...
Performance of spectral beam combining depends on thermal effects on the optical components like vol...
Today, Laser Additive Manufacturing (LAM) is typically performed using a single beam with power up t...
Beam shaping techniques have been widely used in optical engineering especially in projection optics...
Fulltext: Because of the asymmetric emission characteristics of high-power diode laser bars, beam sh...
The intensity distribution of a laser beam has a high impact on laser processing applications. In ma...
In this paper a novel process for a mask-free technology to manufacture selective emitter structures...
To overcome limitations in efficiency originating from the front side of a crystalline silicon solar...
Industrial, military, medical, and research and development applications of lasers frequently requir...
One of the most promising methods to improve the efficiency of crystalline solar cells is the implem...
Industrial, military, medical, and research and development applications of lasers frequently requir...
For most laser hardening industrial applications, CO laser with power in the range 1-10 kW are used....
Since the power of continuous wave laser sources have reached one kilowatt, beam shaping is an impor...
A method for converting single mode Gaussian beams into beams with uniform irradiance profiles is de...
Many laser material processing applications require an optimized beam profile, e.g., ring shape or T...
The performance of laser machining systems can often be improved by adjusting the intensity profile ...
Performance of spectral beam combining depends on thermal effects on the optical components like vol...
Today, Laser Additive Manufacturing (LAM) is typically performed using a single beam with power up t...
Beam shaping techniques have been widely used in optical engineering especially in projection optics...
Fulltext: Because of the asymmetric emission characteristics of high-power diode laser bars, beam sh...
The intensity distribution of a laser beam has a high impact on laser processing applications. In ma...
In this paper a novel process for a mask-free technology to manufacture selective emitter structures...