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Control of a polar order via magnetic field in a vector-chiral magnet (CROSBI ID 302275)

Prilog u časopisu | Pismo (znanstveno) | međunarodna recenzija

Dragičević, Martina ; Góngora, David Rivas ; Rapljenović, Željko ; Herak, Mirta ; Brusar, Vedran ; Altus, Damir ; Pregelj, Matej ; Zorko, Andrej ; Berger, Helmuth ; Arčon, Denis et al. Control of a polar order via magnetic field in a vector-chiral magnet // Physical review. B, 104 (2021), 12; L121107, 6. doi: 10.1103/physrevb.104.l121107

Podaci o odgovornosti

Dragičević, Martina ; Góngora, David Rivas ; Rapljenović, Željko ; Herak, Mirta ; Brusar, Vedran ; Altus, Damir ; Pregelj, Matej ; Zorko, Andrej ; Berger, Helmuth ; Arčon, Denis ; Ivek, Tomislav

engleski

Control of a polar order via magnetic field in a vector-chiral magnet

Vector-chiral (VC) antiferromagnetism is a spiral- like ordering of spins which may allow ferroelectricity to occur due to loss of space inversion symmetry. In this Letter we report direct experimental observation of ferroelectricity in the VC phase of β−TeVO4, a frustrated spin chain system with pronounced magnetic anisotropy and a rich phase diagram. Saturation polarization is proportional to neutron scattering intensities that correspond to the VC magnetic reflection. This implies that an inverse Dzyaloshinskii-Moriya mechanism is responsible for driving electric polarization. Linear magnetoelectric coupling is absent ; however an unprecedented dependence of electric coercive field on applied magnetic field reveals a distinct way of manipulating multiferroic information.

Antiferromagnetism ; Dielectric properties ; Domain walls ; Dzyaloshinskii-Moriya interaction ; Electric polarization ; Ferroelectric domains ; Ferroelectricity ; Frustrated magnetism ; Magnetic phase transitions ; Magnetoelectric effect

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Podaci o izdanju

104 (12)

2021.

L121107

6

objavljeno

2469-9950

10.1103/physrevb.104.l121107

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Fizika

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