Akatsuka Shun, Esser Sebastian, Okumura Shun, Yambe Ryota, Yamada Rinsuke, Hirschmann Moritz M, Aji Seno, White Jonathan S, Gao Shang, Onuki Yoshichika, Arima Taka-Hisa, Nakajima Taro, Hirschberger Max
Department of Applied Physics, The University of Tokyo, Bunkyo-ku, Tokyo, 113-8656, Japan.
RIKEN Center for Emergent Matter Science (CEMS), Wako, Saitama, 351-0198, Japan.
Nat Commun. 2024 May 20;15(1):4291. doi: 10.1038/s41467-024-47127-5.
Van-der-Waals magnetic materials can be exfoliated to realize ultrathin sheets or interfaces with highly controllable optical or spintronics responses. In majority, these are collinear ferro-, ferri-, or antiferromagnets, with a particular scarcity of lattice-incommensurate helimagnets of defined left- or right-handed rotation sense, or helicity. Here, we report polarized neutron scattering experiments on DyTe, whose layered structure has highly metallic tellurium layers separated by double-slabs of dysprosium square nets. We reveal cycloidal (conical) magnetic textures, with coupled commensurate and incommensurate order parameters, and probe the evolution of this ground state in a magnetic field. The observations are well explained by a one-dimensional spin model, with an off-diagonal on-site term that is spatially modulated by DyTe's unconventional charge density wave (CDW) order. The CDW-driven term couples to antiferromagnetism, or to the net magnetization in an applied magnetic field, and creates a complex magnetic phase diagram indicative of competing interactions in this easily cleavable van-der-Waals helimagnet.
范德瓦尔斯磁性材料可以通过剥离来实现具有高度可控光学或自旋电子学响应的超薄片材或界面。大多数情况下,这些是共线铁磁体、亚铁磁体或反铁磁体,特别缺乏具有明确左旋或右旋旋转方向(即螺旋性)的晶格不相称螺旋磁体。在此,我们报告了对DyTe进行的极化中子散射实验,其层状结构具有由镝方形网双层分隔的高度金属性碲层。我们揭示了摆线(锥形)磁织构,其具有耦合的相称和不相称序参量,并在磁场中探测了这种基态的演化。这些观测结果可以通过一维自旋模型很好地解释,该模型具有一个非对角在位项,其在空间上由DyTe的非常规电荷密度波(CDW)序调制。CDW驱动项与反铁磁性或外加磁场中的净磁化强度耦合,并产生一个复杂的磁相图,表明在这种易于解理的范德瓦尔斯螺旋磁体中存在竞争相互作用。