材料科学
铁电性
多铁性
同步加速器
光谱学
红外线的
凝聚态物理
格子(音乐)
化学物理
光学
电介质
光电子学
物理
声学
量子力学
作者
K. Smith,Sriram Poyyapakkam Ramkumar,Kai Du,Xianghan Xu,Sang‐Wook Cheong,Stephanie N. Gilbert Corder,Hans A. Bechtel,Elizabeth Nowadnick,J. L. Musfeldt
标识
DOI:10.1021/acsami.2c19600
摘要
We employ synchrotron-based near-field infrared spectroscopy to image the phononic properties of ferroelectric domain walls in hexagonal (h) Lu0.6Sc0.4FeO3, and we compare our findings with a detailed symmetry analysis, lattice dynamics calculations, and prior models of domain-wall structure. Rather than metallic and atomically thin as observed in the rare-earth manganites, ferroelectric walls in h-Lu0.6Sc0.4FeO3 are broad and semiconducting, a finding that we attribute to the presence of an A-site substitution-induced intermediate phase that reduces strain and renders the interior of the domain wall nonpolar. Mixed Lu/Sc occupation on the A site also provides compositional heterogeneity over micron-sized length scales, and we leverage the fact that Lu and Sc cluster in different ratios to demonstrate that the spectral characteristics at the wall are robust even in different compositional regimes. This work opens the door to broadband imaging of physical and chemical heterogeneity in ferroics and represents an important step toward revealing the rich properties of these flexible defect states.
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