Noncollinear instabilities in the multiorbital magnet CuCr2S4
In the cubic spinel compounds AB2X4 (X: chalcogen), the metal ions A and B form interpenetrating lattices of corner- and edge-sharing octahedra (A) and tetrahedra (B). The flexibility of substituting 3d transition metals opens up a fantastic potential for novel correlated electronic states defined by the competition of (in-)direct exchange paths. Using the local magnetic probes of muon spin rotation (¿SR) and Mössbauer spectroscopy, we have now uncovered the unexpectedly complex diagram in CuCr2S4. We propose a straightforward magnetic neutron powder diffraction experiment to clarify the low-temperature magnetism in CuCr2S4.
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The recommended format for citing this dataset in a research publication is in the following format:
SUKHANOV Aleksandr; ESTEVO SILVA FREHSE Vinícius; Steven Gebel; LITTERST Jochen; Marein C. Rahn; RITTER Clemens and SADROLLAHI Elaheh. (2023). Noncollinear instabilities in the multiorbital magnet CuCr2S4. Institut Laue-Langevin (ILL) doi:10.5291/ILL-DATA.5-31-2936
This data is not yet public
This data is not yet public