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Quantum photovoltaics in wire-dot-wire junctions
We developed an effective tight-binding modeling for photovoltaic junctions made of a finite quantum dot chain connected to two semi-infinite quantum wires. We simulated I-V responses under resonant monochromatic illumination in the case of a two-dot junction by means of the Green's function technique. We thus showed a striking property in these dot-wire architectures: the photocurrent increases under bias.
Quantum photovoltaics in wire-dot-wire junctions
We developed an effective tight-binding modeling for photovoltaic junctions made of a finite quantum dot chain connected to two semi-infinite quantum wires. We simulated I-V responses under resonant monochromatic illumination in the case of a two-dot junction by means of the Green's function technique. We thus showed a striking property in these dot-wire architectures: the photocurrent increases under bias.
Quantum photovoltaics in wire-dot-wire junctions
Berbezier, Aude (Autor:in) / Michelini, Fabienne (Autor:in)
01.01.2014
7 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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