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Environment-Assisted Quantum Transport through Single-Molecule Junctions

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arxiv 1706.02874 v2 pith:3TAVOIBF submitted 2017-06-09 cond-mat.mes-hall physics.chem-phquant-ph

classification cond-mat.mes-hallphysics.chem-phquant-ph
keywords transportenvironment-assistedsingle-moleculechargeinvestigationjunctionsmolecularquantum
verification ladder T0 review T1 audit T2 compute T3 formal
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Single-molecule electronics has been envisioned as the ultimate goal in the miniaturisation of electronic circuits. While the aim of incorporating single-molecule junctions into modern technology still proves elusive, recent developments in this field have begun to enable experimental investigation fundamental concepts within the area of chemical physics. One such phenomenon is the concept of Environment-Assisted Quantum Transport which has emerged from the investigation of exciton transport in photosynthetic complexes. Here, we study charge transport through a two-site molecular junction coupled to a vibrational environment. We demonstrate that vibrational interactions can also significantly enhance the current through specific molecular orbitals. Our study offers a clear pathway towards finding and identifying environment-assisted transport phenomena in charge transport settings.

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