Large-scale simulations of spin-density-wave order in frustrated lattices
ORAL
Abstract
We investigate spin-density-wave (SDW) phases within a generalized mean-field approximation. This approach incorporates the thermal fluctuations of SDW order and the development of short-range order above magnetic ordering temperatures $T_c$. Using a new Langevin dynamics method, we study mesoscale structures associated with triple-$\mathbf Q$ SDW states that are induced by Fermi surface nesting in triangular and kagome lattice Hubbard models. The core of our linear-scaling Langevin dynamics simulations is an efficient stochastic kernel polynomial method for computing the electron density matrix. We also investigate exotic phases above $T_c$ arising from preformed magnetic moments.
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Authors
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Kipton Barros
Los Alamos National Laboratory, T-Division and CNLS, Los Alamos National Laboratory
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Cristian Batista
Los Alamos National Laboratory, Theory Division, LANL, T-Division and CNLS, Los Alamos National Laboratory
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Gia-Wei Chern
University of Virginia