2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/25142Electronic transport through DNA wires in the presence of a strong dissipative environment is investigated. We show that new bath-induced electronic states are formed within the bandgap. These states show up in the linear conductance spectrum as a temperature dependent background and lead to a crossover from tunneling to thermal activated behavior with increasing temperature. Depending on the strength of the electron-bath coupling, the conductance at the Fermi level can show a weak exponential or even an algebraic length dependence. Our results suggest a new environmental-induced transport mechanism. This might be relevant for the understanding of molecular conduction experiments in liquid solution, like those recently performed on poly(GC) oligomers in a water buffer (B. Xu et al., Nano Lett 4, 1105 (2004)).5 pages, 3 figuresSoft Condensed MatterMesoscale and Nanoscale PhysicsBiomoleculesMolecular NetworksQuantum transport through a DNA wire in a dissipative environmenttext