Ding Guangqian, Sun Tingting, Surucu Gokhan, Surucu Ozge, Gencer Aysenur, Wang Xiaotian
School of Science, Chongqing University of Posts and Telecommunications, Chongqing, 40065, China.
School of Physical Science and Technology, Southwest University, Chongqing, 400715, China.
Phys Chem Chem Phys. 2022 Jul 21;24(28):17210-17216. doi: 10.1039/d2cp01992b.
Topological phononic states with nodal lines not only have updated our knowledge of the phases of matter in a fundamental way, but also have become a major frontier research direction in condensed matter physics. From a mathematical perspective, nodal line phonons can be divided into open and closed types. The present attempt is a report on the coexistence of such open and closed nodal line phonons in two realistic solids, CoAsS and NaCuP, based on first-principles calculations. Furthermore, it is shown that the closed and the open nodal line states in CoAsS and NaCuP have touching points and can form a complex nodal structure phonon in a momentum space. Due to the topologically non-trivial behavior of the complex nodal structure in both phonons, evident phononic surface states occur in the projected surfaces of both materials. In this way, these states, arising from the projected crossing points, can benefit experimental detection in follow-up studies. It has been stated that the open and closed nodal line states are formed by the crossings of two phonon branches and, hence, these two types of nodal line phonons are coupled with each other. The results obtained here could be considered as a breakthrough in clearly demonstrating the coexistence of the open and closed nodal line states in phonons and, for this reason, may inspire researchers seeking materials with such topological states in other bosons, such as photons.
具有节线的拓扑声子态不仅从根本上更新了我们对物质相的认识,而且已成为凝聚态物理的一个主要前沿研究方向。从数学角度来看,节线声子可分为开放型和封闭型。本研究基于第一性原理计算,报告了在两种实际固体CoAsS和NaCuP中此类开放型和封闭型节线声子的共存情况。此外,研究表明CoAsS和NaCuP中的封闭型和开放型节线态存在接触点,并且在动量空间中可以形成复杂的节线结构声子。由于两种声子中复杂节线结构的拓扑非平凡行为,在这两种材料的投影表面出现了明显的声子表面态。这样一来,由投影交叉点产生的这些态有利于后续研究中的实验检测。据称,开放型和封闭型节线态是由两个声子分支的交叉形成的,因此,这两种类型的节线声子相互耦合。这里获得的结果可被视为在清晰证明声子中开放型和封闭型节线态共存方面的一个突破,因此,可能会激发研究人员在其他玻色子(如光子)中寻找具有此类拓扑态的材料。