Excess carrier lifetime plays a crucial role in determining the efficiency of solar cells. In this paper, we use the frequency dependence of inphase and quadrature components of modulated electroluminescence (MEL) to measure the relaxation time (decay) of excess carriers. The advantage of the MEL technique is that the relaxation time is obtained directly from the angular frequency at which the quadrature component peaks. It does not need knowledge of the material parameters like mobility, etc., and can be used for any finished solar cells which have detectable light emission. The experiment is easy to perform with standard electrical equipment. For silicon solar cells, the relaxation time is dominated by recombination and hence, the relaxat...
AbstractThe light-biased dynamic analysis of excess carrier decay has been known to yield differenti...
The production of high-quality silicon semiconductors, such as those used in photovoltaic applicatio...
The spatial homogeneity of GaAs solar cells was investigated by picosecond luminescence spectroscopy...
In this paper, the injection-level-dependent measurement of the effective minority carrier lifetime ...
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...
AbstractThe estimation of solar cell efficiency from minority carrier lifetime measurements requires...
International audienceModulated photoluminescence (MPL) is a powerful technique for determining the ...
Modulated photoluminescence (MPL) is a powerful technique for determining the effective minority car...
Time resolved photoluminescence (TRPL) is a powerful method to character the behaviors of carriers a...
Accurate measurements of the injection-dependent excess carrier lifetime of silicon samples are esse...
This thesis presents a novel method to quantify the localised carrier collection efficiency of thin ...
The light-biased dynamic analysis of excess carrier decay has been known to yield differential rathe...
International audienceA new setup for recording time dependent photoluminescence signal in both tran...
One of the critical parameters for the overall efficiency of solar cells is the lifetime of minority...
AbstractThe light-biased dynamic analysis of excess carrier decay has been known to yield differenti...
The production of high-quality silicon semiconductors, such as those used in photovoltaic applicatio...
The spatial homogeneity of GaAs solar cells was investigated by picosecond luminescence spectroscopy...
In this paper, the injection-level-dependent measurement of the effective minority carrier lifetime ...
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...
AbstractThe estimation of solar cell efficiency from minority carrier lifetime measurements requires...
International audienceModulated photoluminescence (MPL) is a powerful technique for determining the ...
Modulated photoluminescence (MPL) is a powerful technique for determining the effective minority car...
Time resolved photoluminescence (TRPL) is a powerful method to character the behaviors of carriers a...
Accurate measurements of the injection-dependent excess carrier lifetime of silicon samples are esse...
This thesis presents a novel method to quantify the localised carrier collection efficiency of thin ...
The light-biased dynamic analysis of excess carrier decay has been known to yield differential rathe...
International audienceA new setup for recording time dependent photoluminescence signal in both tran...
One of the critical parameters for the overall efficiency of solar cells is the lifetime of minority...
AbstractThe light-biased dynamic analysis of excess carrier decay has been known to yield differenti...
The production of high-quality silicon semiconductors, such as those used in photovoltaic applicatio...
The spatial homogeneity of GaAs solar cells was investigated by picosecond luminescence spectroscopy...