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Impulsive stimulated scattering of molecular solids and metals surfaces under extreme conditions in a diamond anvil cell

机译:金刚石砧座中的极端条件下的分子固体和金属表面的脉冲刺激散射

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Impulsive stimulated scattering is utilized to study the acoustic and mechanical properties of both transparent molecular solids and opaque crystalline metal surfaces. Scattering measurements have been performed on roiented molecular crystals under high pressure conditions in a diamond anvil cell. The ISS technique offers and accurate and robust method of obtaining bulk and surface acoustic velocities of molecular and metallic crystals under extreme conditions without the need for physical contact with the sample. Specifically, directionally resolved impulsive thermal Brillouin scattering has bene used to obtain acoustic velocities for oriented crystals of ice VI and ice VII in a high pressure diamond anvil cell. The elastic constants determined from these measurements compare favorably with classical Brillouin scattering results. Impulsive stimulated scattering (ISS) has also been used to obtain the directional dependence of the surface acoustic wave (SAW) velocity on oriented crystal surfaces of metals such as Aluminum (111) and Nickel (100). The orientationally dependent ISS results for Ni (100) are compared with classical Brillouin scattering measuremdents, as well as surface acoustic wave calculations utilizing bulk elastic constants.
机译:利用脉冲刺激散射研究透明分子固体和不透明结晶金属表面的声学和机械性能。在金刚石砧座中的高压条件下对整个分子晶体进行散射测量。在极端条件下,在极端条件下获得分子和金属晶体的体积和表面声速度的iss技术提供和准确和鲁棒方法,而无需与样品物理接触。具体地,定向分辨的脉冲热布里渊散射具有BENE,用于在高压金刚石砧座中获得冰VI和冰VII的取向晶体的声速。从这些测量测定的弹性常数比较有利地与经典布里渊散射结果相比。脉冲刺激散射(ISS)也被用来获得表面声波(SAW)速度在诸如铝(111)和镍(100)的定向晶体表面上的表面声波(SAW)速度的方向依赖性。将Ni(100)的定义依赖性ISS结果与经典布里渊散射测量值进行比较,以及利用散装弹性常数的表面声波计算。

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