Anomalous Magnetoresistance in Ce1-xLaxSb and Ce1-xLaxBi

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  • Anomalous Magnetoresistance in Ce<SUB>1−<I>x</I></SUB>La<I><SUB>x</SUB></I>Sb and Ce<SUB>1−<I>x</I></SUB>La<I><SUB>x</SUB></I>Bi
  • Anomalous Magnetoresistance in Ce 1-x L
  • Anomalous Magnetoresistance in<b><i>C</i><i>e</i></b><sub>1-<i>x</i></sub><b><i>L</i><i>a</i></b><sub>x</sub><b><i>S</i><i>b</i></b>and<b><i>C</i><i>e</i></b><sub>1-<i>x</i></sub><b><i>L</i><i>a</i></b><sub>x</sub><b><i>B</i><i>i</i></b>

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Anomalous magnetoresistance in Ce1−xLaxSb and Ce1−xLaxBi was studied systematically both experimentally and theoretically. It is shown that the unusually strong positive longitudinal magnetoresistance is due to the longitudinal multi-Q charge density wave formation inducing gaps on the Fermi surface of each Landau level, while the strong negative longitudinal magnetoresistance is due to the formation of a Γ8 magnetic polaron lattice.

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