JOURNAL ARTICLE

Electrical detection of Rabi oscillations in microcrystalline silicon thin-film solar cells

Christoph MeierJan BehrendsRobert Bittl

Year: 2013 Journal:   Molecular Physics Vol: 111 (18-19)Pages: 2683-2689   Publisher: Taylor & Francis

Abstract

The microscopic structure of light-activated paramagnetic conduction band tail states and their participation in spin-dependent hopping transport is studied in a microcrystalline silicon thin-film solar cell. Application of X- and S-band electrically detected magnetic resonance (EDMR) experiments in combination with numerical simulations of Rabi oscillations indicates that the spin-dependent process takes place between two neighbouring band tail states. For sufficiently high microwave (mw) power, two Rabi frequencies Ω1 and Ω2 = 2Ω1 show up in the coherent EDMR signals. An analysis of their relative contributions to the Rabi traces suggests that the g-values of both spin partners are not correlated for the majority of the EDMR-active pairs. A small fraction of doublet pairs with similar g-values may explain the appearance of a larger Ω2 contribution than predicted by the simulations.

Keywords:
Microcrystalline silicon Condensed matter physics Silicon Electron paramagnetic resonance Spin (aerodynamics) Paramagnetism Microwave Microcrystalline Rabi cycle Thin film Rabi frequency Chemistry Molecular physics Physics Atomic physics Materials science Nuclear magnetic resonance Optoelectronics Optics Nanotechnology Amorphous silicon Crystalline silicon Crystallography Quantum mechanics

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2
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0.41
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31
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0.69
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Citation History

Topics

Thin-Film Transistor Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Semiconductor materials and interfaces
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Silicon Nanostructures and Photoluminescence
Physical Sciences →  Materials Science →  Materials Chemistry
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