2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/109719We investigate quantum transport characteristics of a ladder model, which effectively mimics the topology of a double-stranded DNA molecule. We consider the interaction of tunneling charges with a selected internal vibrational degree of freedom and discuss its influence on the structure of the current-voltage characteristics. Further, molecule-electrode contact effects are shown to dramatically affect the orders of magnitude of the current. Recent electrical transport measurements on suspended DNA oligomers with a complex base-pair sequence, revealing strikingly high currents, are also presented and used as a reference point for the theoretical modeling. A semi-quantitative description of the measured I-V curves is achieved, suggesting that the coupling to vibrational excitations plays an important role in DNA conduction.10 pages, 7 figuresSoft Condensed MatterMesoscale and Nanoscale PhysicsInelastic quantum transport in a ladder model: Measurements of DNA conduction and comparison to theorytext