拉曼光谱
各向异性
范德瓦尔斯力
凝聚态物理
极化(电化学)
电介质
黑磷
材料科学
电子结构
带隙
张量(固有定义)
Valleytronics公司
物理
化学物理
工作(物理)
拓扑缺陷
激子
原子电子跃迁
流体静力平衡
分子物理学
分子电子跃迁
拓扑绝缘体
声子
静水压力
作者
Jingyi Liu,Leilei Zhang,Zeyu Wang,Minmin Zhao,Binbin Wu,Haidong Long,Xue Chang,Yu Tao,Minghao Du,Yangbin Wang,Zegao Wang,Li Lei
摘要
The fundamental interplay between pressure-driven electronic transitions and anisotropic optical responses remains unresolved in layered black phosphorus (BP), particularly regarding polarization-selective signatures under compression. By deploying high-pressure angle-resolved polarized Raman spectroscopy, we systematically investigate the pressure-induced optical anisotropy characterized by the effective Raman tensor element ratio of Ag modes from bulk to atomically thin BP flakes. Under hydrostatic compression, two reversals in the Raman tensor element ratio are observed at around 1 and 2.5 GPa, closely corresponding to critical electronic transitions, including bandgap closure and enhanced electron–phonon coupling. Anisotropic dielectric calculations further demonstrate that these transitions are primarily driven by dielectric property evolution along the armchair direction. This work paves the way for pressure-designed multifunctional engineering in van der Waals materials.
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