AbstractIn this paper an Excimer laser doping process is investigated from SiN:P and SiN:B PECVD layers used as dopant sources. It is demonstrated efficient doping effect with P and B with large doping range on both p+ and n+ pre-diffused regions. Doped regions are shown to be modified in term of surface concentration and depth by both laser-driven re-distribution and additional over-doping from doped dielectric source. When using laser doping from SiN:B layer, partial or complete compensation of the initial n+ emitter is highlighted. Moreover similar study with SiN:P demonstrated the potential for over-compensate the initial p+ emitter. These laser processes could be used for realization of adjacent p+ and n+ regions with controlled profil...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
AbstractIn this work, we describe a novel fabrication process of p-type interdigitated back contact ...
In this paper we introduce a new crystalline silicon (c-Si) solar cell fabrication technology based ...
AbstractPhosphorus-doped silicon nitride (SiN(P)) layers have been investigated as dopant sources fo...
AbstractA new doping process is investigated by using Excimer Laser Annealing (ELA) on various Atomi...
AbstractFor a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal...
AbstractWe present the first laser doped interdigitated back contacted solar cells with efficiency η...
Selective laser doping is a versatile tool for the local adaption of doping profiles in a silicon su...
This thesis examines two different ways to improve the performance of single sided laser-doped solar...
Screen printed solar cell technology has dominated the photovoltaic (PV) industry for the past coupl...
This study aims at investigating laser doping and laser annealing for crystalline silicon solar cell...
Laser diffusion from PECVD layers can result in the incorporation of impurities like nitrogen into c...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
Cette thèse se propose d’étudier les procédés de dopage et de recuit laser comme outils permettant l...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
AbstractIn this work, we describe a novel fabrication process of p-type interdigitated back contact ...
In this paper we introduce a new crystalline silicon (c-Si) solar cell fabrication technology based ...
AbstractPhosphorus-doped silicon nitride (SiN(P)) layers have been investigated as dopant sources fo...
AbstractA new doping process is investigated by using Excimer Laser Annealing (ELA) on various Atomi...
AbstractFor a novel cell concept based on the combination of silicon heterojunction (SHJ) with metal...
AbstractWe present the first laser doped interdigitated back contacted solar cells with efficiency η...
Selective laser doping is a versatile tool for the local adaption of doping profiles in a silicon su...
This thesis examines two different ways to improve the performance of single sided laser-doped solar...
Screen printed solar cell technology has dominated the photovoltaic (PV) industry for the past coupl...
This study aims at investigating laser doping and laser annealing for crystalline silicon solar cell...
Laser diffusion from PECVD layers can result in the incorporation of impurities like nitrogen into c...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
Cette thèse se propose d’étudier les procédés de dopage et de recuit laser comme outils permettant l...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
AbstractIn this work, we describe a novel fabrication process of p-type interdigitated back contact ...
In this paper we introduce a new crystalline silicon (c-Si) solar cell fabrication technology based ...