Cite this article:
You Yu, Yu-Jing Dong, Yan-Hong Shen, Guo-Dong Zhao, Xiao-Lin Zheng, Jia-Nan Sheng. Lattice dynamics properties of chalcopyrite ZnSnP2: Density-functional calculations by using a linear response theoryJ. Chin. Phys. B, 2017, 26(4): 046302.
| You Yu, Yu-Jing Dong, Yan-Hong Shen, Guo-Dong Zhao, Xiao-Lin Zheng, Jia-Nan Sheng. Lattice dynamics properties of chalcopyrite ZnSnP2: Density-functional calculations by using a linear response theoryJ. Chin. Phys. B, 2017, 26(4): 046302. |
Lattice dynamics properties of chalcopyrite ZnSnP2: Density-functional calculations by using a linear response theory
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Abstract
We present a first-principles study of the structural, dielectric, and lattice dynamical properties for chalcopyrite semiconductor ZnSnP2. The structural properties are calculated using a plane-wave pseudopotential method of density-functional theory. A linear response theory is used to derive Born effective charge tensors for each atom, dielectric constants in low and high frequency limits, and phonon frequencies. We calculate all zone-center phonon modes, identify Raman and infrared active modes, and report LO-TO splitting of the infrared modes. The results show an excellent agreement with experiment and propose several predictive behaviors. -
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