Pawbake Amit, Bellin Christophe, Paulatto Lorenzo, Béneut Keevin, Biscaras Johan, Narayana Chandrabhas, Late Dattatray J, Shukla Abhay
Institut de Minéralogie, de Physique des Matériaux et de Cosmochimie, Sorbonne Université, UMR CNRS 7590, MNHN, IRD UMR 206, 4 Place Jussieu, F-75005 Paris, France.
Chemistry and Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore 560 064, India.
Phys Rev Lett. 2019 Apr 12;122(14):145701. doi: 10.1103/PhysRevLett.122.145701.
Pressure-induced phase transitions in GeTe, a prototype phase change material, have been studied to date with diffraction which is not sensitive to anharmonicity-induced dynamical effects. GeTe is also prone to surface oxidation which may compromise surface sensitive measurements. These factors could be responsible for the lack of clarity about the phases and transitions intervening in the phase diagram of GeTe. We have used high-pressure Raman scattering and ab initio pseudopotential density functional calculations to unambiguously establish the high-pressure phase diagram and identify three phases up to 57 GPa, a low-pressure rhombohedral phase, an intermediate pressure cubic phase, and a high-pressure orthorhombic phase. We detect substantial broadening and softening of Raman modes at low pressure and identify the transition regions and possible intermediate phases.
到目前为止,人们利用对非谐性诱导动力学效应不敏感的衍射方法研究了典型相变材料GeTe中的压力诱导相变。GeTe也容易发生表面氧化,这可能会影响表面敏感测量。这些因素可能导致GeTe相图中介于各相之间的相和相变缺乏清晰性。我们使用高压拉曼散射和从头算赝势密度泛函计算,明确地建立了高压相图,并识别出高达57吉帕的三个相:一个低压菱面体相、一个中压立方相和一个高压正交相。我们在低压下检测到拉曼模式的显著展宽和软化,并识别出转变区域和可能的中间相。