Multibath Influence Matrices: Universal Scaling from Real-Time Dynamics
Abstract
Diverging timescales are the hallmark of critical dynamics and the bottleneck to their classical and quantum simulation. To tame this, we compress a spacetime tensor network: temporally into semigroup influence matrices and spatially via matrix-product states. Benchmarking on the two-impurity Anderson model with its four fermionic species, we compute spectral functions to map the evolution from a Kondo resonance, across a non-Fermi-liquid quantum critical point, and into a gapped singlet phase. Resolving transient through asymptotic dynamics in sudden quenches and Kibble-Zurek ramps, we obtain the universal two-channel-Kondo exponent. Together, these results establish multibath influence matrices as a practical tool for real-time dynamics in strongly correlated multi-orbital systems.
Cite
@article{arxiv.2607.16411,
title = {Multibath Influence Matrices: Universal Scaling from Real-Time Dynamics},
author = {Matan Lotem and Michael Sonner and Valentin Link and Alessio Lerose and Dmitry A. Abanin},
journal= {arXiv preprint arXiv:2607.16411},
year = {2026}
}
Comments
4.5 pages + End Matter, 3 figures