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Simulating Correlated Electrons with Symmetry-Enforced Normalizing Flows

Simulating Correlated Electrons with Symmetry-Enforced Normalizing Flows

来源:Arxiv_logoArxiv
英文摘要

We present the first proof of principle that normalizing flows can accurately learn the Boltzmann distribution of the fermionic Hubbard model - a key framework for describing the electronic structure of graphene and related materials. State-of-the-art methods like Hybrid Monte Carlo often suffer from ergodicity issues near the time-continuum limit, leading to biased estimates. Leveraging symmetry-aware architectures as well as independent and identically distributed sampling, our approach resolves these issues and achieves significant speed-ups over traditional methods.

Dominic Schuh、Janik Kreit、Evan Berkowitz、Lena Funcke、Thomas Luu、Kim A. Nicoli、Marcel Rodekamp

物理学

Dominic Schuh,Janik Kreit,Evan Berkowitz,Lena Funcke,Thomas Luu,Kim A. Nicoli,Marcel Rodekamp.Simulating Correlated Electrons with Symmetry-Enforced Normalizing Flows[EB/OL].(2025-06-20)[2025-07-17].https://arxiv.org/abs/2506.17015.点此复制

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