Journalartikel

Density of states approach to the hexagonal Hubbard model at finite density


AutorenlisteKoerner, Michael; Langfeld, Kurt; Smith, Dominik; von Smekal, Lorenz

Jahr der Veröffentlichung2020

ZeitschriftPhysical Review D

Bandnummer102

Heftnummer5

ISSN1550-7998

eISSN1550-2368

Open Access StatusHybrid

DOI Linkhttps://doi.org/10.1103/PhysRevD.102.054502

VerlagAmerican Physical Society


Abstract
We apply the linear logarithmic relaxation (LLR) method, which generalizes the Wang-Landau algorithm to quantum systems with continuous degrees of freedom, to the fermionic Hubbard model with repulsive interactions on the honeycomb lattice. We compute the generalized density of states of the average Hubbard field and devise two reconstruction schemes to extract physical observables from this result. By computing the particle density as a function of chemical potential we assess the utility of LLR in dealing with the sign problem of this model, which arises away from half filling. We show that the relative advantage over brute-force reweighting grows as the interaction strength is increased and discuss possible future improvements.



Zitierstile

Harvard-ZitierstilKoerner, M., Langfeld, K., Smith, D. and von Smekal, L. (2020) Density of states approach to the hexagonal Hubbard model at finite density, Physical Review D, 102(5), Article 054502. https://doi.org/10.1103/PhysRevD.102.054502

APA-ZitierstilKoerner, M., Langfeld, K., Smith, D., & von Smekal, L. (2020). Density of states approach to the hexagonal Hubbard model at finite density. Physical Review D. 102(5), Article 054502. https://doi.org/10.1103/PhysRevD.102.054502



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