International audienceA relation derived from the Kubo formula shows that optical conductivity measurements below the gap frequency in doped semiconductors can be used to probe directly the time-dependent quantum dynamics of charge carriers. This allows to extract fundamental quantities such as the elastic and inelastic scattering rates, as well as the localization length in disordered systems. When applied to crystalline organic semiconductors, an incipient electron localization caused by large dynamical lattice disorder is unveiled, implying a breakdown of semiclassical transport
We investigate the transport properties of charge carrier disordered organic semiconductors with a f...
Charge carriers in organic crystals are often trapped in point defects. The persistence time of the ...
Quantifying energetic disorder in organic semiconductors continues to attract attention because of i...
International audienceA relation derived from the Kubo formula shows that optical conductivity measu...
We explore the charge transport mechanism in organic semiconductors based on a model that accounts f...
International audienceBloch-Boltzmann transport theory fails to describe the carrier diffusion in cu...
International audienceCharge transport in crystalline organic semiconductors is intrinsically limite...
International audienceWe analyze a model that accounts for the inherently large thermal lattice fluc...
The impact of the energetic disorder and the charge localization on the conductivity, mobility and c...
The charge transport in organic materials, from molecular crystals to polymers, is determined by the...
Charge transport in organic semiconductors is notoriously extremely sensitive to the presence of di...
International audienceThe charge mobility of molecular semiconductors is limited by the large fluctu...
4 pages, 2 figures.-- PACS numbers: 72.20.Dp, 71.38.-k, 72.10.-d, 72.80.Le.-- PDF with supplementary...
Impedance spectroscopy is a very sensitive probe of nonstationary charge transport governed by charg...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
We investigate the transport properties of charge carrier disordered organic semiconductors with a f...
Charge carriers in organic crystals are often trapped in point defects. The persistence time of the ...
Quantifying energetic disorder in organic semiconductors continues to attract attention because of i...
International audienceA relation derived from the Kubo formula shows that optical conductivity measu...
We explore the charge transport mechanism in organic semiconductors based on a model that accounts f...
International audienceBloch-Boltzmann transport theory fails to describe the carrier diffusion in cu...
International audienceCharge transport in crystalline organic semiconductors is intrinsically limite...
International audienceWe analyze a model that accounts for the inherently large thermal lattice fluc...
The impact of the energetic disorder and the charge localization on the conductivity, mobility and c...
The charge transport in organic materials, from molecular crystals to polymers, is determined by the...
Charge transport in organic semiconductors is notoriously extremely sensitive to the presence of di...
International audienceThe charge mobility of molecular semiconductors is limited by the large fluctu...
4 pages, 2 figures.-- PACS numbers: 72.20.Dp, 71.38.-k, 72.10.-d, 72.80.Le.-- PDF with supplementary...
Impedance spectroscopy is a very sensitive probe of nonstationary charge transport governed by charg...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
We investigate the transport properties of charge carrier disordered organic semiconductors with a f...
Charge carriers in organic crystals are often trapped in point defects. The persistence time of the ...
Quantifying energetic disorder in organic semiconductors continues to attract attention because of i...