<div class="csl-bib-body">
<div class="csl-entry">Hille, C., Kugler, F. B., Eckhardt, C., He, Y.-Y., Kauch, A. K., Honerkamp, C., Toschi, A., & Andergassen, S. (2020). Quantitative functional renormalization group description of the two-dimensional Hubbard model. <i>Physical Review Research (PRResearch)</i>, <i>2</i>(3), Article 033372. https://doi.org/10.1103/physrevresearch.2.033372</div>
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/141264
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dc.description.abstract
Using a leading algorithmic implementation of the functional renormalization group (fRG) for interacting fermions on two-dimensional lattices, we provide a detailed analysis of its quantitative reliability for the Hubbard model. In particular, we show that the recently introduced multiloop extension of the fRG flow equations for the self-energy and two-particle vertex allows for a precise match with the parquet approximation also for two-dimensional lattice problems. The refinement with respect to previous fRG-based computation schemes relies on an accurate treatment of the frequency and momentum dependences of the two-particle vertex, which combines a proper inclusion of the high-frequency asymptotics with the so-called truncated unity fRG for the momentum dependence. The adoption of the latter scheme requires, as an essential step, a consistent modification of the flow equation of the self-energy. We quantitatively compare our fRG results for the self-energy and momentum-dependent susceptibilities and the corresponding solution of the parquet approximation to determinant quantum Monte Carlo data, demonstrating that the fRG is remarkably accurate up to moderate interaction strengths. The presented methodological improvements illustrate how fRG flows can be brought to a quantitative level for two-dimensional problems, providing a solid basis for the application to more general systems.
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dc.language.iso
en
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dc.publisher
American Physical Society
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dc.relation.ispartof
Physical Review Research (PRResearch)
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dc.subject
General Earth and Planetary Sciences
en
dc.subject
General Environmental Science
en
dc.title
Quantitative functional renormalization group description of the two-dimensional Hubbard model
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dc.type
Artikel
de
dc.type
Article
en
dc.contributor.affiliation
Rutgers, The State University of New Jersey, United States of America (the)