2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/24414Quantum corrections to the conductivity allow experimental assessment of electronic coherence in metals. We consider whether independent measurements of different corrections are quantitatively consistent, particularly in systems with spin-orbit or magnetic impurity scattering. We report weak localization and time-dependent universal conductance fluctuation data in quasi-one- and two-dimensional AuPd wires between 2 K and 20 K. The data inferred from both methods are in excellent quantitative agreement, implying that precisely the same coherence length is relevant to both corrections.5 pages, 4 figures. Scheduled to appear in PRB 70, 041304 (2004)Mesoscale and Nanoscale PhysicsDisordered Systems and Neural NetworksElectronic coherence in metals: comparing weak localization and time-dependent conductance fluctuationstext