2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/156284In double quantum dots, the exchange interaction between two electron spins renormalizes the excitation energy of pair-flips in the nuclear spin bath, which in turn modifies the non-Markovian bath dynamics. As the energy renormalization varies with the Overhauser field mismatch between the quantum dots, the electron singlet-triplet decoherence resulting from the bath dynamics depends on sampling of nuclear spin states from an ensemble, leading to the transition from exponential decoherence in single-sample dynamics to power-law decay under ensemble averaging. In contrast, the decoherence of a single electron spin in one dot is essentially the same for different choices of the nuclear spin configuration.4 pages 3 figuresMesoscale and Nanoscale PhysicsDecoherence of coupled electron spins via nuclear spin dynamics in quantum dotstext