Electrically detected hyperfine sublevel correlation (ED-HYSCORE) measurements are presented and employed to study spin-dependent transport in thin-film microcrystalline silicon solar cells. We explore the hyperfine coupling between paramagnetic conduction band tail states involved in hopping transport and neighboring 29Si nuclei at low temperature ( T=5 K). ED-HYSCORE measurements performed on solar cells with 29Si-enriched absorber layers reveal that the hyperfine interaction between these current-influencing centers and 29Si nuclei in the surroundings is dominated by isotropic couplings up to ∼ 4 MHz, whereas the anisotropic contributions are small. This indicates that the wave function of the conduction band tail states is distributed ...
Electrically detected magnetic resonance (EDMR) spectroscopy is employed to study the influence of t...
VHF-PECVD was used to prepare undoped as well as p- and n-type microcrystalline silicon with gas pha...
Combining orientation dependent electrically detected magnetic resonance EDMR and g tensor calcula...
Electrically detected hyperfine sublevel correlation (ED-HYSCORE) measurements are presented and emp...
Electrically detected electron-spin-echo envelope modulations (ED-ESEEM) were employed to detect hyp...
The microscopic structure of light-activated paramagnetic conduction band tail states and their part...
Electrically detected electron spin echo envelope modulations ED ESEEM were employed to detect hyp...
Hopping transport through heterostructure solar cells based on B doped crystalline silicon wafers w...
Pulsed electrically detected magnetic resonance pEDMR was employed to study spin dependent process...
In thin film solar cells based on non crystalline thin film silicon or organic semiconductors struct...
Electrically detected magnetic resonance (EDMR) spectroscopy is employed to study the influence of t...
Here we describe a new high frequency high field continuous wave and pulsed electrically detected ma...
An analysis of spin-dependent processes in microcrystalline silicon (mu c-Si:H) pin solar cells is p...
Pulsed multi-frequency electrically detected magnetic resonance (EDMR) at X-, Q- and W-Band (9.7, 34...
Pulsed multi frequency electrically detected magnetic resonance EDMR at X , Q and W Band 9.7, 34...
Electrically detected magnetic resonance (EDMR) spectroscopy is employed to study the influence of t...
VHF-PECVD was used to prepare undoped as well as p- and n-type microcrystalline silicon with gas pha...
Combining orientation dependent electrically detected magnetic resonance EDMR and g tensor calcula...
Electrically detected hyperfine sublevel correlation (ED-HYSCORE) measurements are presented and emp...
Electrically detected electron-spin-echo envelope modulations (ED-ESEEM) were employed to detect hyp...
The microscopic structure of light-activated paramagnetic conduction band tail states and their part...
Electrically detected electron spin echo envelope modulations ED ESEEM were employed to detect hyp...
Hopping transport through heterostructure solar cells based on B doped crystalline silicon wafers w...
Pulsed electrically detected magnetic resonance pEDMR was employed to study spin dependent process...
In thin film solar cells based on non crystalline thin film silicon or organic semiconductors struct...
Electrically detected magnetic resonance (EDMR) spectroscopy is employed to study the influence of t...
Here we describe a new high frequency high field continuous wave and pulsed electrically detected ma...
An analysis of spin-dependent processes in microcrystalline silicon (mu c-Si:H) pin solar cells is p...
Pulsed multi-frequency electrically detected magnetic resonance (EDMR) at X-, Q- and W-Band (9.7, 34...
Pulsed multi frequency electrically detected magnetic resonance EDMR at X , Q and W Band 9.7, 34...
Electrically detected magnetic resonance (EDMR) spectroscopy is employed to study the influence of t...
VHF-PECVD was used to prepare undoped as well as p- and n-type microcrystalline silicon with gas pha...
Combining orientation dependent electrically detected magnetic resonance EDMR and g tensor calcula...