Alternate identifier:
-
Related identifier:
(Is Supplement To) 10.48550/arXiv.2411.13273 - DOI
Creator/Author:
Reingruber, Adrien https://orcid.org/0009-0000-0245-4186 [Universität Würzburg]
Contributors:
(Researcher)
Ulybyshev, Maksim https://orcid.org/0000-0003-3135-5704 [Universität Würzburg]

(Researcher)
Assaad, Fakher https://orcid.org/0000-0002-3302-9243 [Universität Würzburg]

(Researcher)
Pongsangangan, Kitinan https://orcid.org/0000-0003-3619-6706 [Mahidol University Bangkok]
Title:
Hydrodynamics of Lorentz symmetric systems: a quantum Monte Carlo study
Additional titles:
-
Description:
(Abstract) We present a study on the hydrodynamic behavior of charge current in a Lorentz symmetric system: graphene at charge-neutrality. We compute the current profiles directly from Quantum Monte Carlo (QMC) simulations of the microscopic tight-binding model with long-range Coulomb interactions. This allows...

(Other) MU (AR) thanks the DFG for financial support un- der the projects UL444/2-1, Project number 495044360 (AS120/19-1, Project number 530989922). FFA ac- knowledges financial support from the DFG through the W¨urzburg-Dresden Cluster of Excellence on Complex- ity and Topology in Quantum Matter - ct.qmat...
Keywords:
Graphene
Electronic transport
Hydrodynamics
Quantum Monte Carlo
Boltzmann theory
Related information:
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Language:
English
Production year:
Subject areas:
Physics
Resource type:
Dataset
Data source:
(Other) Computer/HPC
Software used:
Resource production
Software:
Algorthims for Lattice Fermions (ALF) - 2.4 - 2.4
Alternative software:
-
Data processing:
-
Publication year:
Rights holders:
Funding:
Complexity and Topology in Quantum Matter - (EXC 2147: Complexity and Topology in Quantum Matter (CT.QMAT)) 390858490
Deutsche Forschungsgemeinschaft - (Numerical challenges in Quantum Monte Carlo simulations in condensed matter physics) 495044360
Deutsche Forschungsgemeinschaft - (Numerical simulations of topological and exotic states of quantum matter) 530989922
Deutsche Forschungsgemeinschaft - (SFB 1143: Correlated Magnetism: From Frustration to Topology) 247310070
Deutsche Forschungsgemeinschaft - (Quantum design: understanding, creating, and controlling novel states of matter) 327807255
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Archiving date:
2024-12-06
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24.4 MB
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