arXiv · 2311.05515
Conditional no-jump dynamics of non-interacting quantum chains
Abstract
We analyze the open dynamics of quantum systems conditioned on no jumps being detected. We first obtain general results relating the no-jump probability and the waiting-time distributions to the conditional evolution of specific system observables. These results are applied to single-qubit models, whose conditional dynamics is quite involved and shows a rich set of physical behaviors. Furthermore, we obtain general expressions for the no-jump dynamics of non-interacting fermionic-bosonic chains undergoing Gaussian-preserving dynamics. We show that the conditional dynamics is determined by a non-linear Riccati-type differential equation for the correlation matrix. Finally, we apply our results to chains of hopping particles under inhomogeneous jump rates and boundary driven systems in presence of pairing terms.
Explore related subjects
Keep this discovery
Michele Coppola, Dragi Karevski, Gabriel T. Landi. 2023-11-09. Conditional no-jump dynamics of non-interacting quantum chains. https://arxiv.org/abs/2311.05515
Cite the original work for its findings. Save a collection to share your selection of sources.