论文标题
在高压下,单个组分分子导体[PD(DDDT)$ _ 2 $]的电子结构(dddt = 5,6-二氢-1,4-二硫素2,3-二硫代酯)
Electronic Structure of a Single-Component Molecular Conductor [Pd(dddt)$_2$] (dddt = 5,6-dihydro-1,4-dithiin-2,3-dithiolate) under High Pressure
论文作者
论文摘要
我们检查了基于单晶同步器X射线X射线差异测量值5.9 gpa,在室温下检查了单个组分分子导体[PD(DDDT)$ _ 2 $]的高压电子结构(pd(dddt)$ _ 2 $](dddt = 5,6-二二二硫酸-1,4-二硫蛋白-2,3-二硫代)。单斜晶胞包含四个分子,它们形成两个晶体学上独立的分子层。 8 $ \ times $ 8矩阵汉密尔顿的紧密结合模型可作为狄拉克电子系统提供电子结构。 Dirac点描述了第一个Brillouin区域内的循环,并获得了淋巴结线的半学线。通过计算状态的密度(DOS),显示了带有线性分散剂的狄拉克锥的明显特性。该系统中的狄拉克锥与同型(最高占据分子轨道)和Lumo(最低无占空地的分子轨道)带的穿越,这源自不同分子层之间的直接相互作用。除了间接的机制外,这是一种新发现的机制[J.物理。 Soc。 jpn。,{\ bf 86},064705(2017)]。当Homo和Lumo带在表面上相遇,而Homo-Lumo耦合不存在时,Dirac点是一条线。使用降低的4 $ \ times $ 4矩阵哈密顿量的减少模型对这种机制进行了验证。频带能量($δe$)在dirac点与费米级别的偏差很小($ΔE<$ 0.4MEV)。通过计算装饰(时间逆转不变动量)的占用带征态状态的奇偶校验来检查节点线,以表明拓扑数为1。
We examined high-pressure electronic structure of a single-component molecular conductor [Pd(dddt)$_2$] (dddt = 5,6-dihydro-1,4-dithiin-2,3-dithiolate) at room temperature, based on the crystal structure determined by single crystal synchrotron X-ray diffraction measurements at 5.9 GPa. The monoclinic unit cell contains four molecules that form two crystallographically independent molecular layers. A tight-binding model of 8 $\times$ 8 matrix Hamiltonian gives an electronic structure as a Dirac electron system. The Dirac point describes a loop within the first Brillouin zone, and a nodal line semimetal is obtained. The noticeable property of the Dirac cone with a linear dispersion is shown by calculating density of states (DOS). The Dirac cone in this system is associated with the crossing of HOMO (highest occupied molecular orbital) and LUMO (lowest unoccupied molecular orbital) bands, which originates from the direct interaction between different molecular layers. This is a newly found mechanism in addition to the indirect one [J. Phys. Soc. Jpn., {\bf 86}, 064705 (2017)]. The Dirac points emerge as a line, when the HOMO and LUMO bands meet on the surface and the HOMO-LUMO couplings are absent. Such a mechanism is verified using a reduced model of 4 $\times$ 4 matrix Hamiltonian. The deviation of the band energy ($δE$) at the Dirac point from the Fermi level is very small ($δE < $ 0.4meV). The nodal line is examined by calculating the parity of the occupied band eigen states at TRIM (Time Reversal Invariant Momentum) showing that the topological number is 1.