论文标题
Terahertz晶格和电荷动力学在铁电半导体sn $ _x $ pb $ _ {1-x} $ te
Terahertz lattice and charge dynamics in ferroelectric semiconductor Sn$_x$Pb$_{1-x}$Te
论文作者
论文摘要
铁电过渡引起的对称性破裂通常会触发拓扑电子状态(例如铁电基金属/半法)中的拓扑电子状态的出现。因此,晶格变形和电子状态之间的这种强耦合对于控制新的拓扑阶段基本上很重要。在这里,我们通过Terahertz时域光谱法研究了铁电的半导体SNXPB1-XTE薄膜中的Terahertz晶格和电荷动力学。随着温度降低,横向光学声子的谐振频率显示出明显的软化和上流。晶格动力学的温度异常直接表明位移型铁电跃迁。所得相图表明,由于压缩应变与散装晶体相比,由于压缩应变而增强了铁电性。软声子即使在金属状态下,也可以诱导大型DC和Terahertz介电常数。此外,我们发现,在组合物周围增强了软声声子模式的天生有效电荷,以显示带隙截止与拓扑跃迁相关的。
The symmetry breaking induced by the ferroelectric transition often triggers the emergence of topological electronic states such as Weyl fermions in ferroelectric-like metals/semimetals. Such strong coupling between the lattice deformation and electronic states is therefore essentially important for the control of novel topological phases. Here, we study the terahertz lattice and charge dynamics in ferroelectric semiconductor SnxPb1-xTe thin films hosting versatile topological phases by means of the terahertz time-domain spectroscopy. With lowering the temperature, the resonant frequency of transverse optical phonon shows the significant softening and upturn. This temperature anomaly of lattice dynamics directly indicates the displacive-type ferroelectric transition. The resulting phase diagram suggests the enhancement of ferroelectricity in the films due to compressive strain compared with the bulk crystals. The soft phonon induces the large DC and terahertz dielectric constant even in metallic state. Furthermore, we find that the Born effective charge of soft phonon mode is enhanced at around the compositions showing the band gap closing associated with the topological transition.