Related Experiment Video
Updated: Jan 31, 2026

Probe Type II Band Alignment in One-Dimensional Van Der Waals Heterostructures Using First-Principles Calculations
Published on: October 12, 2019
Effect of Defects on Spontaneous Polarization in Pure and Doped LiNbO₃: First-Principles Calculations
Weiwei Wang1, Dahuai Zheng2, Mengyuan Hu3
1School of Physics, Nankai University, Tianjin 300071, China. weiweiwang@mail.nankai.edu.cn.
Abstract:
Numerous studies have indicated that intrinsic defects in lithium niobate (LN) dominate its physical properties. In an Nb-rich environment, the structure that consists of a niobium anti-site with four lithium vacancies is considered the most stable structure. Based on the density functional theory (DFT), the specific configuration of the four lithium vacancies of LN were explored. The results indicated the most stable structure consisted of two lithium vacancies as the first neighbors and the other two as the second nearest neighbors of Nb anti-site in pure LN, and a similar stable structure was found in the doped LN. We found that the defects dipole moment has no direct contribution to the crystal polarization. Spontaneous polarization is more likely due to the lattice distortion of the crystal. This was verified in the defects structure of Mg2+, Sc3+, and Zr4+ doped LN. The conclusion provides a new understanding about the relationship between defect clusters and crystal polarization.
More Related Videos
Related Concept Videos
Calculating Standard Free Energy Changes
Spontaneity
Group Polarization
Hardy-Weinberg Principle
Molecular Shape and Polarity
The Uncertainty Principle

