In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic semiconductors originating from spindependent reactions between electron and hole polarons. The basic picture we employ is that of two spin-1/2 polarons, each localized on a site in the semiconductor, where one of the polarons incoherently hops to the other site, forming a spin-0 bipolaron or singlet exciton, or a spin-1 triplet exciton. We describe this process within the framework of the stochastic Liouville equation. We introduce the useful simplifications where the hyperfine coupling of the electronic spin with the surrounding nuclear spins is replaced by a classical random hyperfine field (semiclassical approximation) and where the hopp...
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 effects of a magnetic field on the current in sandwich devices of a nonmagnetic material in-betw...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
Organic semiconductors are a promising class of materials, offering several advantages over inorgani...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
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 effects of a magnetic field on the current in sandwich devices of a nonmagnetic material in-betw...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
In this chapter, we discuss the essence of hyperfine-field induced magnetic field effects in organic...
Organic semiconductors are a promising class of materials, offering several advantages over inorgani...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
Many organic semiconductor structures display strong magnetoelectrical and magneto-optical effects a...
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 effects of a magnetic field on the current in sandwich devices of a nonmagnetic material in-betw...