LGEP 2011 ID = 750International audienceIn this paper we present a complete theoretical analysis of the oscillating photocarrier grating (OPG) method, starting from the generalized equations that describe charge transport and recombination under oscillating grating illumination conditions. The solution of these equations allows us to implement a calculation reproducing the experimental OPG curves. We study both experimentally and from our calculations the dependence of the OPG curves on different external parameters, such as the applied electric field, grating period and illumination intensity. We find that the response of the sample is linked to a characteristic time of the material, which could be the dielectric relaxation time or the sma...
A self-consistent description of the ultrafast dynamics of photoexcited carriers in semiconductors b...
This research focuses on the investigation of the opto-electronic properties of a variety of organic...
peer reviewedThe knowledge of minority carrier lifetime of a semiconductor is important for the asse...
LGEP 2011 ID = 750International audienceIn this paper we present a complete theoretical analysis of ...
International audienceAllowing for the simultaneous determination of the photocarriers drift mobilit...
International audienceIn this chapter we detail photoconductivity techniques based on the illuminati...
IIn this paper we present a complete theoretical analysis of the steady-state photocarrier grating (...
International audienceIn this paper we first present a comparison between two grating techniques, th...
International audienceAbstract The steady-state photocarrier grating (SSPG) experiment is a popular ...
We present a complete theoretical analysis of the modulated photocarrier grating method (MPG). Our c...
Pulsed excitation methods followed by time-resolved measurements have been questioned as a valid pro...
The generation and recombination kinetics of non-equilibrium charge carriers under illumination is s...
Author Institution: Coates Chemical Laboratories, Louisiana State UniversityPhotoconductivity produc...
The Moving photocarrier Grating Technique (MGT) allows the simultaneous determination of the photoca...
Photoconductivity is the incremental change in the electrical conductivity of a semiconductor or ins...
A self-consistent description of the ultrafast dynamics of photoexcited carriers in semiconductors b...
This research focuses on the investigation of the opto-electronic properties of a variety of organic...
peer reviewedThe knowledge of minority carrier lifetime of a semiconductor is important for the asse...
LGEP 2011 ID = 750International audienceIn this paper we present a complete theoretical analysis of ...
International audienceAllowing for the simultaneous determination of the photocarriers drift mobilit...
International audienceIn this chapter we detail photoconductivity techniques based on the illuminati...
IIn this paper we present a complete theoretical analysis of the steady-state photocarrier grating (...
International audienceIn this paper we first present a comparison between two grating techniques, th...
International audienceAbstract The steady-state photocarrier grating (SSPG) experiment is a popular ...
We present a complete theoretical analysis of the modulated photocarrier grating method (MPG). Our c...
Pulsed excitation methods followed by time-resolved measurements have been questioned as a valid pro...
The generation and recombination kinetics of non-equilibrium charge carriers under illumination is s...
Author Institution: Coates Chemical Laboratories, Louisiana State UniversityPhotoconductivity produc...
The Moving photocarrier Grating Technique (MGT) allows the simultaneous determination of the photoca...
Photoconductivity is the incremental change in the electrical conductivity of a semiconductor or ins...
A self-consistent description of the ultrafast dynamics of photoexcited carriers in semiconductors b...
This research focuses on the investigation of the opto-electronic properties of a variety of organic...
peer reviewedThe knowledge of minority carrier lifetime of a semiconductor is important for the asse...