论文标题
cu $ _2 $ oseo $ _3 $在镜面反射几何形状中揭示的手性表面旋转纹理
Chiral surface spin textures in Cu$_2$OSeO$_3$ unveiled by soft x-ray scattering in specular reflection geometry
论文作者
论文摘要
谐振弹性软X射线磁散射(XRMS)是探索单晶中长周期旋转纹理的强大工具。但是,由于软X射线区域中的长波长施加的动量传递范围有限,因此Bragg衍射仅限于具有较大晶格参数的晶体。另外,小角度X射线散射涉及软能X射线范围,但是,该样品制备带来了困难,该样品制备涉及聚焦的离子束铣削,将晶体稀释至低于几百nm的厚度。我们展示了如何通过从亚纳米平滑晶体表面进行镜面反射中使用XRM来规避这些限制。该方法允许观察衍射峰从Cu $ _2 $ oseo $ _3 $的单晶表面的螺旋和圆锥形自旋调制,并探测其相应的手性,作为对二甲状腺散射强度的贡献。结果表明,由于在可用的动量传递范围内没有相应的bragg峰,对迄今未经软X射线进行过多非中心对称系统进行XRMS研究的一种有希望的方法。
Resonant elastic soft x-ray magnetic scattering (XRMS) is a powerful tool to explore long-periodic spin textures in single crystals. However, due to the limited momentum transfer range imposed by long wavelengths of photons in the soft x-ray region, Bragg diffraction is restricted to crystals with the large lattice parameters. Alternatively, small angle x-ray scattering has been involved in the soft energy x-ray range which, however, brings in difficulties with the sample preparation that involves focused ion beam milling to thin down the crystal to below a few hundred nm thickness. We show how to circumvent these restrictions by using XRMS in specular reflection from a sub-nanometer smooth crystal surface. The method allows observing diffraction peaks from the helical and conical spin modulations at the surface of a Cu$_2$OSeO$_3$ single crystal and probing their corresponding chirality as contributions to the dichroic scattered intensity. The results suggest a promising way to carry out XRMS studies on plethora of noncentrosymmetric systems hitherto unexplored with soft x-rays due to the absence of the commensurate Bragg peaks in the available momentum transfer range.