We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hopping of a charge carrier and coherent precession of its spin in an effective magnetic field, composed of the random hyperfine field of hydrogen nuclei and an applied magnetic field. From Monte Carlo simulations and an analysis of the waiting-time distribution of the carrier we predict a surprisingly weak temperature dependence, but a considerable magnetic-field dependence of the spin-diffusion length. We show that both predictions are in agreement with experiments on organic spin valves
Organic semiconductors are interesting materials for spintronics applications because of their long ...
Organic semiconductors are interesting materials for spintronics applications because of their long ...
\u3cp\u3eOrganic semiconductors are interesting materials for spintronics applications because of th...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
This article presents a comparison of spin transport mechanism in two π-conjugated organic polymers ...
This article presents a comparison of spin transport mechanism in two π-conjugated organic polymers ...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
The understanding of spin transport in organics has been challenged by the discovery of large magnet...
Organic semiconductors are interesting materials for spintronics applications because of their long ...
Organic semiconductors are interesting materials for spintronics applications because of their long ...
\u3cp\u3eOrganic semiconductors are interesting materials for spintronics applications because of th...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
We present a theory for spin diffusion in disordered organic semiconductors, based on incoherent hop...
This article presents a comparison of spin transport mechanism in two π-conjugated organic polymers ...
This article presents a comparison of spin transport mechanism in two π-conjugated organic polymers ...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
Because of the light elements involved, the spin–orbit coupling in organic materials is small. There...
The understanding of spin transport in organics has been challenged by the discovery of large magnet...
Organic semiconductors are interesting materials for spintronics applications because of their long ...
Organic semiconductors are interesting materials for spintronics applications because of their long ...
\u3cp\u3eOrganic semiconductors are interesting materials for spintronics applications because of th...