A Ferrotoroidic Candidate with Well-Separated Spin Chains.
basic_science · Level V
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- Record sourced from PubMed, PMID 35064593.
- Also identified by DOI 10.1002/adma.202106728.
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Abstract
The search of novel quasi-1D materials is one of the important aspects in the field of material science. Toroidal moment, the order parameter of ferrotoroidic order, can be generated by a head-to-tail configuration of magnetic moment. It has been theoretically proposed that 1D dimerized and antiferromagnetic (AFM)-like spin chain hosts ferrotoroidicity and has the toroidal moment composed of only two antiparallel spins. Here, the authors report a ferrotoroidic candidate of Ba<sub>6</sub> Cr<sub>2</sub> S<sub>10</sub> with such a theoretical model of spin chain. The structure consists of unique dimerized face-sharing CrS<sub>6</sub> octahedral chains along the c axis. An AFM-like ordering at ≈10 K breaks both space- and time-reversal symmetries and the magnetic point group of mm'2'allows three ferroic orders in Ba<sub>6</sub> Cr<sub>2</sub> S<sub>10</sub> : (anti)ferromagnetic, ferroelectric, and ferrotoroidic orders. Their investigation reveals that Ba<sub>6</sub> Cr<sub>2</sub> S<sub>10</sub> is a rare ferrotoroid ic candidate with quasi 1D spin chain, which can be considered as a starting point for the further exploration of the physics and applications of ferrotoroidicity.