Qian Fengjiao, Bannenberg Lars J, Wilhelm Heribert, Chaboussant Grégory, Debeer-Schmitt Lisa M, Schmidt Marcus P, Aqeel Aisha, Palstra Thomas T M, Brück Ekkes, Lefering Anton J E, Pappas Catherine, Mostovoy Maxim, Leonov Andrey O
Faculty of Applied Sciences, Delft University of Technology, Mekelweg 15, 2629JB Delft, Netherlands.
Diamond Light Source Ltd., Chilton, Didcot, Oxfordshire OX11 0DE, UK.
Sci Adv. 2018 Sep 21;4(9):eaat7323. doi: 10.1126/sciadv.aat7323. eCollection 2018 Sep.
The lack of inversion symmetry in the crystal lattice of magnetic materials gives rise to complex noncollinear spin orders through interactions of a relativistic nature, resulting in interesting physical phenomena, such as emergent electromagnetism. Studies of cubic chiral magnets revealed a universal magnetic phase diagram composed of helical spiral, conical spiral, and skyrmion crystal phases. We report a remarkable deviation from this universal behavior. By combining neutron diffraction with magnetization measurements, we observe a new multidomain state in CuOSeO. Just below the upper critical field at which the conical spiral state disappears, the spiral wave vector rotates away from the magnetic field direction. This transition gives rise to large magnetic fluctuations. We clarify the physical origin of the new state and discuss its multiferroic properties.
磁性材料晶格中缺乏反演对称性,通过相对论性质的相互作用产生复杂的非共线自旋序,从而导致诸如涌现电磁学等有趣的物理现象。对立方手性磁体的研究揭示了一个由螺旋螺旋相、圆锥螺旋相和斯格明子晶相组成的通用磁相图。我们报告了与这种通用行为的显著偏差。通过将中子衍射与磁化测量相结合,我们在CuOSeO中观察到一种新的多畴态。就在圆锥螺旋态消失的上临界场以下,螺旋波矢旋转远离磁场方向。这种转变会引起大的磁涨落。我们阐明了新态的物理起源并讨论了其多铁性性质。