论文标题
抑制手性韦尔半含量ta $ _2 $ se $ _8 $ i的轴子电荷密度波和超导性的发作
Suppression of axionic charge density wave and onset of superconductivity in the chiral Weyl semimetal Ta$_2$Se$_8$I
论文作者
论文摘要
由于电荷密度波(CDW)的形成,具有强电子相互作用的Weyl半学可以在低温下显示其绝缘体状态的轴子耦合。这样的CDW出现在线性链中复合Weyl Semimetal TA $ _2 $ SE $ _8 $ i以下263 K以下,从而导致动态凝结轴轴化准粒的外观。在这项研究中,我们证明了ta $ _2 $ se $ _8 $中的链链耦合可以变化以抑制CDW形成,同时在高温下保留Weyl Semimital阶段。在17 GPA以上,由于碘亚晶格的非晶化,Weyl Semimetal阶段无法生存,我们诱导超导性。从结构上讲,一维的TA-SE链保持完整,并在一个维度上提供超导通道。我们强调的是,我们的结果表明,在无法接近以前的研究的压力下,轴心电荷密度波诱导的间隙几乎完全抑制。包括此CDW阶段,我们的实验以及理论预测和分析揭示了TA $ _2 $ _2 $ SE $ _8 $ i的完整拓扑相图及其与附近超导状态的关系。结果表明,ta $ _2 $ se $ _8 $ i是一个独特的通用平台,用于探索相关的拓扑状态。
A Weyl semimetal with strong electron-phonon interaction can show axionic coupling in its insulator state at low temperatures, owing to the formation of a charge density wave (CDW). Such a CDW emerges in the linear chain compound Weyl semimetal Ta$_2$Se$_8$I below 263 K, resulting in the appearance of the dynamical condensed-matter axion quasiparticle. In this study, we demonstrate that the interchain coupling in Ta$_2$Se$_8$I can be varied to suppress the CDW formation with pressure, while retaining the Weyl semimetal phase at high temperatures. Above 17 GPa, the Weyl semimetal phase does not survive and we induce superconductivity, due to the amorphization of the iodine sub-lattice. Structurally, the one-dimensional Ta-Se-chains remain intact and provide a superconducting channel in one dimension. We highlight that our results show a near-complete suppression of the gap induced by the axionic charge-density wave at pressures inaccessible to previous studies. Including this CDW phase, our experiments and theoretical predictions and analysis reveal the complete topological phase diagram of Ta$_2$Se$_8$I and its relationship to the nearby superconducting state. The results demonstrate Ta$_2$Se$_8$I to be a distinctively versatile platform for exploring correlated topological states.