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Transport response of carbon-based resonant cavities under time-dependent potential and magnetic fields
Content Provider | Semantic Scholar |
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Author | Rocha, Claudia Gomes Da Pacheco, M. Torres, Luís Cuniberti, Gianaurelio Latge, Andrea |
Copyright Year | 2011 |
Abstract | Here we report theoretical transport calculations on carbon-based nanomaterials used as resonator cavities under the effects of a time-dependent field. A magnetic field is considered as an extra modulator tool, able to encode binary ON or OFF transmission states on the quantum systems. Regular either complex conductance Fabry-Pérot patterns mapped onto gate vs. bias voltage diagrams can be revealed depending on the set of parameters used on the simulations (amplitude and frequency of the ac field and magnetic-field intensity). We discuss the interplay between the effects on the resonant cavity conductance, caused by the presence of an ac gate plate, which tends to delocalize the electronic wave functions, and an external magnetic field that oppositely localizes the electrons. Copyright c © EPLA, 201 |
File Format | PDF HTM / HTML |
Alternate Webpage(s) | http://nano.tu-dresden.de/pubs/reprints/2011_EPL_94_47002.pdf |
Language | English |
Access Restriction | Open |
Subject Keyword | Biasing Body cavities Conductance (graph) Copyright Dental caries Diagram ENCODE Electrons Fabry Disease Magnetic Fields Magnetic Resonance Imaging Modulation Modulator Device Component Nanostructured Materials Quantum system Resonator Device Component Simulation voltage |
Content Type | Text |
Resource Type | Article |