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arxiv: 1206.6944 · v2 · pith:6KB5M3VWnew · submitted 2012-06-29 · ❄️ cond-mat.str-el · physics.comp-ph

Double exchange model on triangular lattice: non-coplanar spin configuration and phase transition near quarter filling

classification ❄️ cond-mat.str-el physics.comp-ph
keywords spinnon-coplanarphasecorrelationconfigurationfillingnearquarter
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Unconventional anomalous Hall effect in frustrated pyrochlore oxides is originated from spin chirality of non-coplanar localized spins, which can also be induced by the competition between ferromagnetic (FM) double exchange interaction $J_{H}$ and antiferromagnetic superexchange interaction $J_{AF}$. Here truncated polynomial expansion method and Monte Carlo simulation are adopted to investigate the above model on two-dimensional triangular lattice. We discuss the influence of the range of FM-type spin-spin correlation and strong electron-spin correlation on the truncation error of spin-spin correlation near quarter filling. Two peaks of the probability distribution of spin-spin correlation in non-coplanar spin configuration clearly show that non-coplanar spin configuration is an intermediate phase between FM and 120-degree spin phase. Near quarter filling, there is a phase transition from FM into non-coplanar and further into 120-degree spin phase when $J_{AF}$ continually increases. Finally the effect of temperature on magnetic structure is discussed.

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