论文标题

手性Weyl半份纳米线中原子上尖锐的内部界面

Atomically Sharp Internal Interface in a Chiral Weyl Semimetal Nanowire

论文作者

Mathur, Nitish, Yuan, Fang, Cheng, Guangming, Kaushik, Sahal, Robredo, Iñigo, Vergniory, Maia G., Cano, Jennifer, Yao, Nan, Jin, Song, Schoop, Leslie M.

论文摘要

Weyl半法(WSM)中的内部接口被预测具有不同的拓扑特征,这些拓扑特征与经常研究的外部接口(晶体到视为边界)不同。但是,在WSM中缺乏原子上尖锐和面向晶体学的内部界面,因此很难在材料内部进行实验研究隐藏的拓扑状态。在这里,我们研究了一个在化学合成的单晶纳米线(NWS)的独特的内部界面,称为Merohedral Twin边界,COSI是空间组P213的手性WSM(第198号)。高分辨率扫描透射电子显微镜表明,该内部界面为(001)双平面,并在原子上尖锐的界面与反转孪晶连接两个对映体对应物。 Ab-Initio计算显示(001)双边界处的局部内部费米弧,可以与外部费米弧和散装状态明确区分。这些Merohedrally Twinned Cosi NW提供了一个理想的材料系统,以探测与WSMS内部接口相关的未探索拓扑特性。

Internal interfaces in Weyl semimetals (WSMs) are predicted to host distinct topological features that are different from the commonly studied external interfaces (crystal-to-vacuum boundaries). However, the lack of atomically sharp and crystallographically oriented internal interfaces in WSMs makes it difficult to experimentally investigate hidden topological states buried inside the material. Here, we study a unique internal interface known as merohedral twin boundary in chemically synthesized single-crystal nanowires (NWs) of CoSi, a chiral WSM of space group P213 (No. 198). High resolution scanning transmission electron microscopy reveals that this internal interface is (001) twin plane and connects two enantiomeric counterparts at an atomically sharp interface with inversion twinning. Ab-initio calculations show localized internal Fermi arcs at the (001) twin boundary that can be clearly distinguished from both external Fermi arcs and bulk states. These merohedrally twinned CoSi NWs provide an ideal material system to probe unexplored topological properties associated with internal interfaces in WSMs.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源