Magnetic Single Domain State of the Monochiral Helimagnet MnSi in Zero Field Limit: Magnetic Properties Study
arXiv:1502.00810 · doi:10.1103/PhysRevB.91.134403
Abstract
Attention is drawn to a possibility to obtain the monochiral helimagnet MnSi in a magnetic single domain state (SDS) in zero magnetic field limit. It is shown that this metastable zero field magnetic SDS can be achieved by gradual decrease of the field down to zero after initial transformation of MnSi to a spin-polarized state in high fields . This can be achieved only for [111]. Investigations of MnSi in magnetic SDS give us a possibility to determine the two components of low field magnetic susceptibility of this compound, and [ and correspond to , and (111)-plane containing magnetic moments in helically ordered state]. These results are compared with macroscopic magnetic susceptibility of MnSi earlier determined for this compound only in magnetic multi domain state (MDS). In addition our results are compared with the data reported for some non-monochiral helimagnets. Characteristic features of monochiral helimagnets are elucidated.
Version accepted to PRB 6 pages, 5 figures
References in corpus (5)
- Spontaneous Skyrmion Ground States in Magnetic Metals
- Fluctuation-induced first-order phase transition in Dzyaloshinskii-Moriya helimagnets
- Magnetic phase diagram of MnSi inferred from magnetization and ac susceptibility
- Unified Molecular Field Theory for Collinear and Noncollinear Heisenberg Antiferromagnets
- Specific Features of Magnetic Phase Diagram of an MnSi Helimagnet