AbstractLaser chemical processing (LCP), based on the patented LaserMicroJet technology by Synova® S.A, was introduced by Fraunhofer Institute for Solar Energy Systems (Fraunhofer ISE), as a novel approach for selective doping for high efficiency (> 20%) silicon wafer solar cells. The technique consists of coupling a laser beam into a highly pressurised thin liquid jet. Total reflection inside the liquid jet enables laser light to be wave-guided towards the sample of interest. If the liquid contains a dopant source, selective doping is possible via the laser-induced, physical and chemical interactions of the substrate and doping medium. To date, this process was primarily investigated for silicon wafer solar cells. In this work, we report o...
We present an enhanced model to describe the physics of laser chemical processing (LCP), a liquid je...
A large area cw diode laser is utilised in this thesis to develop three new processes to improve the...
In this paper Laser Chemical Processing (LCP) is used for high local doping of selective emitters. I...
Laser processing is an important application for fabrication of silicon solar cells, e.g. buried con...
In this paper we report progress in Laser Chemical Processing (LCP) wafering and microstructuring ap...
Laser Chemical Processing (LCP) is a laser-assisted technique that allows for various applications w...
The introduction of selective emitters underneath the front contacts of solar cells can considerably...
For a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal wrap th...
AbstractFor a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal...
An overview of the selected current research focuses of Laser Chemical Processing (LCP) technology a...
In this paper newest results concerning n-type Laser Chemical Processing (LCP) doping for varying la...
In this paper newest results concerning n-type Laser Chemical Processing (LCP) doping for varying la...
AbstractFor a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal...
The laser chemical processing (LCP) technique for the local doping of crystalline silicon solar cell...
Laser Chemical Processing (LCP) is presented as a novel microstructuring method for multiple applica...
We present an enhanced model to describe the physics of laser chemical processing (LCP), a liquid je...
A large area cw diode laser is utilised in this thesis to develop three new processes to improve the...
In this paper Laser Chemical Processing (LCP) is used for high local doping of selective emitters. I...
Laser processing is an important application for fabrication of silicon solar cells, e.g. buried con...
In this paper we report progress in Laser Chemical Processing (LCP) wafering and microstructuring ap...
Laser Chemical Processing (LCP) is a laser-assisted technique that allows for various applications w...
The introduction of selective emitters underneath the front contacts of solar cells can considerably...
For a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal wrap th...
AbstractFor a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal...
An overview of the selected current research focuses of Laser Chemical Processing (LCP) technology a...
In this paper newest results concerning n-type Laser Chemical Processing (LCP) doping for varying la...
In this paper newest results concerning n-type Laser Chemical Processing (LCP) doping for varying la...
AbstractFor a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal...
The laser chemical processing (LCP) technique for the local doping of crystalline silicon solar cell...
Laser Chemical Processing (LCP) is presented as a novel microstructuring method for multiple applica...
We present an enhanced model to describe the physics of laser chemical processing (LCP), a liquid je...
A large area cw diode laser is utilised in this thesis to develop three new processes to improve the...
In this paper Laser Chemical Processing (LCP) is used for high local doping of selective emitters. I...