Direct link between low-temperature magnetism and high-temperature sodium order in NaxCoO2

We prove the direct link between low-temperature (T) magnetism and high-T Na+ ordering in NaxCoO2 using the example of a so far unreported magnetic transition at 8 K which involves a weak ferromagnetic moment. The 8 K feature is characterized in detail and its dependence on a diffusive Na+ rearrange...

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Veröffentlicht in:Physical review letters 2008-01, Vol.100 (2), p.026407-026407
Hauptverfasser: Schulze, T F, Häfliger, P S, Niedermayer, Ch, Mattenberger, K, Bubenhofer, S, Batlogg, B
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Sprache:eng
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Zusammenfassung:We prove the direct link between low-temperature (T) magnetism and high-T Na+ ordering in NaxCoO2 using the example of a so far unreported magnetic transition at 8 K which involves a weak ferromagnetic moment. The 8 K feature is characterized in detail and its dependence on a diffusive Na+ rearrangement around 200 K is demonstrated. Applying muons as local probes this process is shown to result in a reversible phase separation into distinct magnetic phases that can be controlled by specific cooling protocols. Thus the impact of ordered Na+ Coulomb potential on the CoO2 physics is evidenced opening new ways to experimentally revisit the NaxCoO2 phase diagram.
ISSN:0031-9007
DOI:10.1103/PhysRevLett.100.026407