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Setting Limits on Supersymmetry Using Simplified Models
Published on: November 15, 2013
Benchmarking non-perturbative many-body approaches in the exactly solvable Hatsugai-Kohmoto model
Hui Li1, Ziyu Li2, Run-Yu Chen1
1Institute for Advanced Study in Physics and School of Physics, Zhejiang University, Hangzhou 310027, People's Republic of China.
Abstract:
The accurate simulation of strongly correlated electron systems, especially non-Fermi liquid states, remains a central challenge in condensed matter physics, motivating the development of various non-perturbative many-body methods. Such methods are typically benchmarked against determinant quantum Monte Carlo in the Hubbard model, which is limited by the fermionic sign problem and the uncertainties of numerical analytic continuation. To address these issues, we use the exactly solvable Hatsugai-Kohmoto (HK) model as a rigorous testing platform to evaluate three many-body approximations:GW,HGW, andSGW. By comparing Green's functions, spectral properties, and response functions with exact solutions, we show that theGWapproximation, often considered insufficient for describing strong correlation, exhibits a previously unreported solution branch that accurately reproduces the gap structure in the HK model. In addition, using a covariant formalism, we find thatHGWprovides an accurate description of charge response, whileSGWperforms well for spin correlations. Our results establish the HK model as a highly effective benchmark system and help refine the understanding ofGWmethods in strongly correlated regimes.
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