Metamagnetic texture in a polar antiferromagnet
D. A. Sokolov, N. Kikugawa, T. Helm, H. Borrmann, U. Burkhardt, R., Cubitt, E. Ressouche, M. Bleuel, K. Kummer, A. P. Mackenzie, and U. K., R\"o{\ss}ler

TL;DR
This paper reports the discovery of a novel metamagnetic texture in a layered antiferromagnet, Ca3Ru2O7, characterized by a modulated coexistence of antiferromagnetic and ferromagnetic order driven by Dzyaloshinskii-Moriya interactions.
Contribution
It introduces the concept of a metamagnetic texture in acentric materials, combining experimental neutron scattering and theoretical analysis to reveal a new spin state.
Findings
Observation of a modulated spin state between 8 and 20 nm scale.
Identification of chiral twisting effects due to Dzyaloshinskii-Moriya exchange.
Detection of anomalies in electronic transport linked to the spin texture.
Abstract
The notion of a simple ordered state implies homogeneity. If the order is established by a broken symmetry, elementary Landau theory of phase transitions shows that only one symmetry mode describes this state. Precisely at points of phase coexistence domain states formed of large regions of different phases can be stabilized by long range interactions. In uniaxial antiferromagnets the so-called metamagnetism is an example of such a behavior, when an antiferromagnetic and field-induced spin-polarized paramagnetic/ferromagnetic state co-exist at a jump-like transition in the magnetic phase diagram. Here, combining experiment with theoretical analysis, we show that a different type of mixed state between antiferromagnetism and ferromagnetism can be created in certain acentric materials. In the small-angle neutron scattering experiments we observe a field-driven spin-state in the layered…
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