性格(数学)
材料科学
对称(几何)
凝聚态物理
理论物理学
物理
数学
几何学
作者
Sambridhi Shah,S. Choi,K. Smith,Yanhong Gu,B.C. Taylor,Matthew Cothrine,David Mandrus,Zhenxian Liu,Heung‐Sik Kim,J. L. Musfeldt
出处
期刊:APL Materials
[American Institute of Physics]
日期:2025-07-01
卷期号:13 (7)
被引量:3
摘要
Complex chalcogenides are renowned for their tunable electronic, magnetic, and optical properties under external stimuli. The MPX3 family (M = Mn, Ni, Co, V; X = S, Se) is a platform for many exciting discoveries—especially under compression—although CdPS3 is thought to be different because the Cd center possesses a filled 4d shell, which precludes Mottness. Here, we combine synchrotron-based infrared absorbance and Raman scattering spectroscopies with diamond anvil cell techniques, complementary lattice dynamics calculations, and an analysis of the energy landscape to reveal a series of structural phase transitions in CdPS3. We find four distinct pressure-driven transitions, with low frequency modes detectable over the full 35 GPa range of our investigation. A group–subgroup analysis along with our first-principles calculations allows us to partially unravel the space group sequence. For instance, the first critical pressure is a monoclinic C2/m to trigonal R3̄ transition at 10 GPa. Despite the softness and overall sensitivity to pressure, we do not locate an insulator-to-metal transition in this pressure range, indicating that the energy scale for gap closure is significantly higher than expected. We discuss these findings in terms of force-induced color change and Mott vs band character in this system.
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