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Inelastic cotunneling with energy-dependent contact transmission
Author(s) -
Sander Blok,
R. R. Agundez Mojarro,
Louis Maduro,
M. Blaauboer,
Sense Jan van der Molen
Publication year - 2017
Publication title -
the journal of chemical physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.071
H-Index - 357
eISSN - 1089-7690
pISSN - 0021-9606
DOI - 10.1063/1.4975809
Subject(s) - condensed matter physics , transmission (telecommunications) , coulomb , physics , resonance (particle physics) , coulomb blockade , quantum tunnelling , current (fluid) , energy (signal processing) , voltage , chemistry , atomic physics , quantum mechanics , electron , electrical engineering , thermodynamics , transistor , engineering
We investigate inelastic cotunneling in a model system where the charging island is connected to the leads through molecules with energy-dependent transmission functions. To study this problem, we propose two different approaches. The first is a pragmatic approach that assumes Lorentzian-like transmission functions that determine the transmission probability to the island. Using this model, we calculate current versus voltage (IV) curves for increasing resonance level positions of the molecule. We find that shifting the resonance energy of the molecule away from the Fermi energy of the contacts leads to a decreased current at low bias, but as bias increases, this difference decreases and eventually inverses. This is markedly different from IV behavior outside the cotunneling regime. The second approach involves multiple cotunneling where also the molecules are considered to be in the Coulomb blockade regime. We find here that when Ec≫eV,kBT, the IV behavior approaches the original cotunneling behavior pro...

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