Tarekegne Abebe T, Zhou Binbin, Kaltenecker Korbinian, Iwaszczuk Krzysztof, Clark Stewart, Jepsen Peter Uhd
Opt Express. 2019 Feb 4;27(3):3618-3628. doi: 10.1364/OE.27.003618.
We investigate the dielectric properties of the 4H and 6H polytypes of silicon carbide in the 0.1-19 THz range, below the fundamental transverse-optical phonons. Folding of the Brillouin zone due to the specific superlattice structure of the two polytypes leads to activation of acoustic phonon modes. We use a combination of ultrabroadband terahertz time-domain spectroscopy and simulations based on density-functional perturbation theory to observe and characterize these modes, including band splitting due to the dissimilar carbon and silicon sublattices of the structures, and an indirect measurement of the anisotropic sound velocities in the two polytypes.
我们研究了碳化硅4H和6H多型体在低于基本横向光学声子的0.1 - 19太赫兹范围内的介电特性。由于这两种多型体的特定超晶格结构导致的布里渊区折叠,激活了声学声子模式。我们结合使用超宽带太赫兹时域光谱和基于密度泛函微扰理论的模拟,来观察和表征这些模式,包括由于结构中碳和硅子晶格不同而导致的能带分裂,以及对这两种多型体中各向异性声速的间接测量。