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Hexagonal Zr3X (X = Al, Ga, In) Metals: High Dynamic Stability, Nodal Loop, and Perfect Nodal Surface States

机译:六角形Zr3x(X = Al,Ga,IN)金属:高动态稳定性,节点环,完美的节点表面状态

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In the recent years, topological semimetals/metals, including nodal point, nodal line and nodal surface semimetals/metals, have been studied extensively because of their potential applications in spintronics and quantum computers. In this study, we predict a family of materials, Zr3X (X = Al, Ga, In), hosting the nodal loop and nodal surface states in the absence of spin–orbit coupling. Remarkably, the energy variation of the nodal loop and nodal surface states in Zr3X are very small and these topological signatures lie very close to the Fermi level. When the effect of spin–orbit coupling is considered, the nodal loop and nodal surface states exhibit small energy gaps (less than 25 meV and 35 meV, respectively) that are suitable observables reflecting the spin-orbit coupling response of these topological signatures and can be detected in experiments. Moreover, these compounds are dynamically stable, and therefore, form potential material platforms to study nodal loop and nodal surface semimetals.
机译:近年来,由于它们在闪光灯和量子计算机中的潜在应用,已经在拓扑半球/金属,包括节点,节点线和节点表面半态/金属,包括节点,节点线和节点表面半球/金属。在这项研究中,我们预测了一系列材料,Zr3x(X = Al,Ga,In),在没有自旋轨道耦合的情况下托管节点环和节点表面状态。值得注意的是,Zr3x中的节点环和节点表面状态的能量变化非常小,这些拓扑签名非常接近费米水平。当考虑旋转轨道耦合的效果时,节点环和节点表面状态表现出小的能量间隙(分别小于25mEV和35MeV),其是反映这些拓扑签名的旋转轨道耦合响应的合适的可观察者在实验中被检测到。此外,这些化合物是动态稳定的,因此形成潜在的材料平台,以研究Nodal Loop和Nodal表面半态。

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