拉曼光学活性
拉曼光谱
极化(电化学)
圆极化
分子物理学
拉曼散射
光学
偶极子
材料科学
相干反斯托克斯拉曼光谱
光谱学
点反射
核磁共振
旋光
磁偶极子
分子
化学
激发极化
对称(几何)
物理
一级
拉曼冷却
光强度
凝聚态物理
X射线拉曼散射
频域
线极化
时域
磁圆二色性
磁场
作者
Gakuto Kusuno,Takeshi Hayashida,Takayuki Nagai,Hikaru Watanabe,Rikuto Oiwa,Tsuyoshi Kimura,Takuya Satoh
摘要
Raman optical activity (ROA), the dependence of Raman intensity on the circular polarization of incident and scattered light, has traditionally been observed in chiral molecules and magnetic materials, where inversion or time-reversal symmetry is broken. Here we demonstrate that ROA can also arise in a centrosymmetric and nonmagnetic ferroaxial crystal. Using circularly polarized Raman spectroscopy on single-crystalline NiTiO_{3}, we observed a pronounced ROA signal in the cross-circular polarization configurations, which correlates with the ferroaxial domain structure. Our symmetry analysis, first-principles calculations of phonons, and tight-binding model calculations reveal that the natural ROA originates from the ferroaxial order and persists even within the electric dipole approximation. These results establish ROA as a powerful probe of ferroaxial order in centrosymmetric systems.
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