International audienceThe consequences of several microscopic interactions on the photoemission spectra of crystalline organic semiconductors are studied theoretically. It is argued that their relative roles can be disentangled by analyzing both their temperature and their momentum-energy dependence. Our analysis shows that the polaronic thermal band narrowing, which is the foundation of most theories of electrical transport in organic semiconductors, is inconsistent in the range of microscopic parameters appropriate for these materials. An alternative scenario is proposed to explain the experimental trends
We present a theoretical description of polaron bandwidth narrowing in organic molecular crystals. B...
Abstract. We investigate by means of high resolution angular resolved photoemission spectroscopy the...
In organic crystalline semiconductor molecular components are held together by very weak interaction...
We propose that the electron transport in crystalline organic semiconductors at room temperature (RT...
We demonstrate that the degree of charge delocalization has a strong impact on polarization energy a...
International audienceWe analyze a model that accounts for the inherently large thermal lattice fluc...
4 pages, 2 figures.-- PACS numbers: 72.20.Dp, 71.38.-k, 72.10.-d, 72.80.Le.-- PDF with supplementary...
Spectral and transport properties of small molecule single-crystal organic semiconductors have been ...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Electron coupling to intramolecular and intermolecular vibrational modes is investigated in models a...
We explore the charge transport mechanism in organic semiconductors based on a model that accounts f...
We report on an infrared spectroscopy study of mobile holes in the accumulation layer of organic fie...
Quantifying energetic disorder in organic semiconductors continues to attract attention because of i...
Application of organic semiconductors in electronic devices has inspired and revived many academic a...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
We present a theoretical description of polaron bandwidth narrowing in organic molecular crystals. B...
Abstract. We investigate by means of high resolution angular resolved photoemission spectroscopy the...
In organic crystalline semiconductor molecular components are held together by very weak interaction...
We propose that the electron transport in crystalline organic semiconductors at room temperature (RT...
We demonstrate that the degree of charge delocalization has a strong impact on polarization energy a...
International audienceWe analyze a model that accounts for the inherently large thermal lattice fluc...
4 pages, 2 figures.-- PACS numbers: 72.20.Dp, 71.38.-k, 72.10.-d, 72.80.Le.-- PDF with supplementary...
Spectral and transport properties of small molecule single-crystal organic semiconductors have been ...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Electron coupling to intramolecular and intermolecular vibrational modes is investigated in models a...
We explore the charge transport mechanism in organic semiconductors based on a model that accounts f...
We report on an infrared spectroscopy study of mobile holes in the accumulation layer of organic fie...
Quantifying energetic disorder in organic semiconductors continues to attract attention because of i...
Application of organic semiconductors in electronic devices has inspired and revived many academic a...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
We present a theoretical description of polaron bandwidth narrowing in organic molecular crystals. B...
Abstract. We investigate by means of high resolution angular resolved photoemission spectroscopy the...
In organic crystalline semiconductor molecular components are held together by very weak interaction...