Handunkanda Sahan U, Curry Erin B, Voronov Vladimir, Hancock Jason N
Department of Physics, University of Connecticut, Storrs, CT 06269, United States of America. Institute for Materials Science, University of Connecticut, Storrs, CT 06269, United States of America.
J Phys Condens Matter. 2020 Jan 16;32(3):035403. doi: 10.1088/1361-648X/ab4955. Epub 2019 Sep 30.
Simple cubic 'open' perovskite ScF stands out among trifluoride materials in its large, isotropic negative thermal expansion (NTE), but also its proximity of its zero-temperature state to a structural phase transition. Here we report a temperature- and frequency-dependent lattice dynamical study of Brillouin zone center lattice excitations of single crystals of ScF using infrared reflectivity measurements. In addition to quantifying the mode strengths and energies in single crystals of this interesting material, we also find strong evidence for multiphonon absorption processes which excite the zone-edge incipient soft modes associated with NTE and the structural quantum phase transition. In this way, we identify an optically-allowed pathway to excite soft modes provides a means to athermally populate modes associated with NTE in ScF.
简单立方“开放”钙钛矿ScF在三氟化物材料中表现突出,不仅具有大的各向同性负热膨胀(NTE),而且其零温度状态接近结构相变。在此,我们报告了使用红外反射率测量对ScF单晶布里渊区中心晶格激发进行的温度和频率依赖的晶格动力学研究。除了量化这种有趣材料单晶中的模式强度和能量外,我们还发现了多声子吸收过程的有力证据,该过程激发了与NTE和结构量子相变相关的区边缘初始软模。通过这种方式,我们确定了一种光学允许的激发软模途径,为非热填充ScF中与NTE相关的模式提供了一种手段。