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Incommensurate Magnetic Ordering from One-Dimensional Correlated Topological Bulk States

Published 1 Mar 2018 in cond-mat.str-el | (1803.00270v3)

Abstract: A phenomenological model accounts for the calculation of incommensurate ordering wave vectors (IC) in several Ce- and U-based f-electron itinerant compounds (CePtSn, CePdSn, CeNiSn, CeRhIn<em>5<em>5, URu2_2Si2_2, CeNiAsO, CeCu</em>(6−x)</em>{(6-x)}Aux_x, UNi2_2Al3_3, CeCuSn) as well as in BSSCO, Rb2_2ZnBr4_4, MnSi and prototypical IC system Chromium metal. This model is justified by a many-body topological one-dimensional (1-D) Dirac Hamiltonian after center of mass transformation on a chiral set of momenta defined by a local expansion of crystallographic Bragg planes. Implications for the emergence of long range bulk states driven by fluctuations with this model are discussed.

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