In most noninteracting quantum systems, the scaling theory of localization predicts one-parameter scaling flow in both ergodic and localized regimes. On the other hand, it is expected that the one-parameter scaling hypothesis breaks down for interacting systems that exhibit the many-body ergodicity breaking transition. Here we introduce a scaling theory of fading ergodicity, which is a precursor regime of many-body ergodicity breaking. We argue that the two-parameter scaling governs the entire ergodic regime; however, (i) it evolves into the one-parameter scaling at the ergodicity breaking critical point with the critical exponent ν=1, and (ii) it gives rise to the resilient one-parameter scaling close to the ETH point. Our theoretical framework may serve as a building block for two-parameter scaling theories of many-body systems.
@article{arxiv.2412.15331,
title = {Scaling theory of fading ergodicity},
author = {Rafał Świętek and Miroslav Hopjan and Carlo Vanoni and Antonello Scardicchio and Lev Vidmar},
journal= {arXiv preprint arXiv:2412.15331},
year = {2025}
}