DOE OSTI · 3366617
Geometric decoherence time in Lindbladian dynamics
Abstract
The onset of decoherence in open many-body systems lacks a dynamical timescale grounded in the loss of bipartite entanglement. Here, we introduce the geometric decoherence time, defined as the earliest moment the monotone relation between logarithmic negativity and Rényi-$\frac{1}{2}$ entropy—exactly equal across any bipartition for pure states—breaks down under open-system evolution, signaling entropy growth without accompanying entanglement growth. We establish this criterion in both single-particle Gaussian dynamics and many-body Lindbladian evolution. We show that quantum mutual information provides a complementary long-time diagnostic: Its asymptotic vanishing is equivalent to factorization of the steady state across the bipartition, a condition strictly stronger than separability, and whenever a product steady state is approached exponentially in trace norm, negativity and mutual information share the same decay rate. In the presence of a strong symmetry, this tracking can fail—residual classical correlations can survive after entanglement has vanished. In the Kitaev chain with balanced gain and loss, we derive a closed-form solution and show that the topological phase sustains longer coherence times than the trivial phase at identical dissipation, with a local minimum at the chiral-symmetric point. In the interacting XXZ chain, exact many-body evolution shows that local 𝑍 dephasing preserves residual classical correlations, whereas gain and loss restore the mutual-information tracking of negativity. Furthermore, our results establish the geometric decoherence time as a dynamical scale tracking the onset of decoherence.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jha, Rishabh [University of Southern California, Los Angeles, CA (United States)] (ORCID:0009000687994889), Haas, Stephan [University of Southern California, Los Angeles, CA (United States)] (ORCID:0000000348267188), Prem, Abhinav [Bard College, Annandale-on-Hudson, NY (United States)] (ORCID:0000000344387107). 2026-08-21. Geometric decoherence time in Lindbladian dynamics. https://doi.org/10.1103/d5f3-r8d2
Cite the original work for its findings. Save a collection to share your selection of sources.