Anomalous helimagnetic domain shrinkage due to the weakening of Dzyaloshinskii-Moriya interaction in CrAs
arXiv:2006.08534 · doi:10.1103/PhysRevB.102.104432
Abstract
CrAs is a well-known helimagnet with the double-helix structure originating from the competition between the Dzyaloshinskii-Moriya interaction (DMI) and antiferromagnetic exchange interaction . By resonant soft X-ray scattering (RSXS), we observe the magnetic peak (0~0~) that emerges at the helical transition with 267.5 K. Intriguingly, the helimagnetic domains significantly shrink on cooling below 255 K, opposite to the conventional thermal effect. The weakening of DMI on cooling is found to play a critical role here. It causes the helical wave vector to vary, ordered spins to rotate, and extra helimagnetic domain boundaries to form at local defects, thus leading to the anomalous shrinkage of helimagnetic domains. Our results indicate that the size of magnetic helical domains can be controlled by tuning DMI in certain helimagnets.
References in corpus (8)
- Spontaneous Skyrmion Ground States in Magnetic Metals
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Fluctuation-induced first-order phase transition in Dzyaloshinskii-Moriya helimagnets
- Superconductivity in the vicinity of antiferromagnetic order in CrAs
- Skyrmion Lattice in Two-Dimensional Chiral Magnet
- The nature of the magnetic order in Ca3Co2O6
- Detection of an Unconventional Superconducting Phase in the Vicinity of the Strong First-Order Magnetic Transition in CrAs Using ^75As-Nuclear Quadrupole Resonance
- Exploring the origins of the Dzyalloshinski-Moria interaction in MnSi