In this paper, the injection-level-dependent measurement of the effective minority carrier lifetime of solar cells from dynamic time-modulated electroluminescence is introduced. The analogy between optical and electrical injection of excess carriers is elaborated, the relevant specifications of the experimental setup are addressed, and an experimental proof of concept is given. Lifetime measurements over a very broad injection range are presented and found to agree well with dynamic photoluminescence measurements
International audienceThe minority-carrier lifetime is a crucial parameter for the improvement of el...
Based on quasi-steady-state photoluminescence, we present an approach to extract minority carrier li...
A simultaneous determination of injection dependent minority carrier lifetime and net dopant concent...
The light-biased dynamic analysis of excess carrier decay has been known to yield differential rathe...
AbstractThe light-biased dynamic analysis of excess carrier decay has been known to yield differenti...
Excess carrier lifetime plays a crucial role in determining the efficiency of solar cells. In this p...
Minority carrier lifetime is the most crucial material parameter for the performance of a silicon so...
The measurement of the effective carrier lifetime in silicon has a great importance for material cha...
AbstractWe investigate the impact of an injection-dependent carrier lifetime in crystalline silicon ...
Differential light-biased dynamic measurements of charge carrier recombination properties in semicon...
We investigate the impact of an injection-dependent carrier lifetime in crystalline silicon on dynam...
AbstractThe estimation of solar cell efficiency from minority carrier lifetime measurements requires...
International audienceTime-resolved photoluminescence (TRPL) was investigated on passivated silicon ...
Modulated quasi-steady-state photoluminescence is used in photovoltaics in order to measure the inje...
AbstractThe minority-carrier lifetime is a crucial parameter for the improvement of electronic or op...
International audienceThe minority-carrier lifetime is a crucial parameter for the improvement of el...
Based on quasi-steady-state photoluminescence, we present an approach to extract minority carrier li...
A simultaneous determination of injection dependent minority carrier lifetime and net dopant concent...
The light-biased dynamic analysis of excess carrier decay has been known to yield differential rathe...
AbstractThe light-biased dynamic analysis of excess carrier decay has been known to yield differenti...
Excess carrier lifetime plays a crucial role in determining the efficiency of solar cells. In this p...
Minority carrier lifetime is the most crucial material parameter for the performance of a silicon so...
The measurement of the effective carrier lifetime in silicon has a great importance for material cha...
AbstractWe investigate the impact of an injection-dependent carrier lifetime in crystalline silicon ...
Differential light-biased dynamic measurements of charge carrier recombination properties in semicon...
We investigate the impact of an injection-dependent carrier lifetime in crystalline silicon on dynam...
AbstractThe estimation of solar cell efficiency from minority carrier lifetime measurements requires...
International audienceTime-resolved photoluminescence (TRPL) was investigated on passivated silicon ...
Modulated quasi-steady-state photoluminescence is used in photovoltaics in order to measure the inje...
AbstractThe minority-carrier lifetime is a crucial parameter for the improvement of electronic or op...
International audienceThe minority-carrier lifetime is a crucial parameter for the improvement of el...
Based on quasi-steady-state photoluminescence, we present an approach to extract minority carrier li...
A simultaneous determination of injection dependent minority carrier lifetime and net dopant concent...