论文标题

通过破坏弗里德尔定律的二维材料成像极性

Imaging Polarity in Two Dimensional Materials by Breaking Friedel's Law

论文作者

Deb, Pratiti, Cao, Michael C., Han, Yimo, Holtz, Megan E., Xie, Saien, Park, Jiwoong, Hovden, Robert, Muller, David A.

论文摘要

弗里德尔定律保证了薄材料的反演对称衍射图案,其中运动近似或单散射模型所保持。通常,打破弗里德尔对称性归因于厚,非中心对称晶体内的多个散射事件。但是,二维(2D)材料(例如MOS $ _2 $的单一单层)也可能违反弗里德尔的定律,而与与布拉格峰之间的对比意外对比。我们分析表明,在散射波函数的功率系列扩展中保留高阶项可以描述$ hkl $和$ \ + edline {hkl} $峰之间的异常对比度,该{HKL} $峰在2D晶体中发生,其平面内部反转对称对称性。这些高阶术语描述了多个散射路径,从原子薄的材料中的同一原子开始。此外,含有重元素(例如WS $ _2 $)的2D材料始终充当强相对象,无论入射电子束的能量多么高,都会违反弗里德尔定律。在实验上,这种理解可以增强基于衍射的技术,以提供2D材料中的极性,双域,面内旋转或其他极性纹理的快速成像。

Friedel's law guarantees an inversion-symmetric diffraction pattern for thin, light materials where a kinematic approximation or a single-scattering model holds. Typically, breaking Friedel symmetry is ascribed to multiple scattering events within thick, non-centrosymmetric crystals. However, two-dimensional (2D) materials such as a single monolayer of MoS$_2$ can also violate Friedel's law, with unexpected contrast between conjugate Bragg peaks. We show analytically that retaining higher order terms in the power series expansion of the scattered wavefunction can describe the anomalous contrast between $hkl$ and $\overline{hkl}$ peaks that occurs in 2D crystals with broken in-plane inversion symmetry. These higher-order terms describe multiple scattering paths starting from the same atom in an atomically thin material. Furthermore, 2D materials containing heavy elements, such as WS$_2$, always act as strong phase objects, violating Friedel's law no matter how high the energy of the incident electron beam. Experimentally, this understanding can enhance diffraction-based techniques to provide rapid imaging of polarity, twin domains, in-plane rotations, or other polar textures in 2D materials.

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