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首页> 外文期刊>Journal of Advanced Research >Novel topological nodal lines and exotic drum-head-like surface states in synthesized CsCl-type binary alloy TiOs
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Novel topological nodal lines and exotic drum-head-like surface states in synthesized CsCl-type binary alloy TiOs

机译:合成的CSCL型二元合金TiOS中的新型拓扑节点线和异种鼓头表面状态

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Very recently, searching for new topological nodal line semimetals (TNLSs) and drum-head-like (DHL) surface states has become a hot topic in the field of physical chemistry of materials. Via first principles, in this study, a synthesized CsCl type binary alloy, TiOs, was predicted to be a TNLS with three topological nodal lines (TNLs) centered at the X point in the ksubx/y/z/sub?=? π plane, and these TNLs, which are protected by mirror, time reversal ( T ) and spatial inversion ( P ) symmetries, are perpendicular to one another. The exotic drum-head-like (DHL) surface states can be clearly observed inside and outside the crossing points (CPs) in the bulk system. The CPs, TNLs, and DHL surface states of TiOs are very robust under the influences of uniform strain, electron doping, and hole doping. Spin-orbit coupling (SOC)-induced gaps can be found in this TiOs system when the SOC is taken into consideration. When the SOC is involved, surface Dirac cones can be found in this system, indicating that the topological properties are still maintained. Similar to TiOs, ZrOs and HfOs alloys are TNLSs under the Perdew-Burke-Ernzerhof method. The CPs and the TNLs in both alloys disappear, however, under the Heyd-Scuseria-Ernzerhof method. It is hoped that the DHL surface property in TiOs can be detected by surface sensitive probes in the near future.
机译:最近,搜索新的拓扑节点线半球(TNLS)和鼓头(DHL)表面状态已成为材料物理化学领域的热门话题。通过第一原理,在本研究中,预测合成的CSCL型二元合金,TiOS是具有在K X / Y / Z ?=? π平面和这些由镜子保护的TNL,时间反转(T)和空间反转(P)对称,彼此垂直。在散装系统中的交叉点(CPS)内外,可以清楚地观察到异端鼓头类似(DHL)表面状态。 TiOS的CPS,TNL和DHL表面状态在均匀应变,电子掺杂和孔掺杂的影响下非常稳健。当考虑到SOC时,可以在本TIOS系统中找到旋转轨道耦合(SOC)诱导的间隙。当涉及SOC时,可以在该系统中找到表面DIRAC锥体,表明仍然保持拓扑特性。类似于TiOS,Zros和HFOS合金是Perdew-Burke-Ernzerhof方法下的TNLS。然而,两种合金中的CPS和TNL在Heyd-Scuseria-Ernzerhof方法下消失了。希望在不久的将来可以通过表面敏感探针检测TiO中的DHL表面性质。

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