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Elastic anisotropy and single-crystal moduli of solid argon up to 64 GPa from time-domain Brillouin scattering

机译:时域布里渊散射引起的高达64 GPa的固态氩的弹性各向异性和单晶模量

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摘要

Single-crystal elastic moduli C-ij, shear modulus G, and Zener anisotropic ratio A of solid argon having the face-centered cubic (fcc) structure were determined at high pressures between 12 and 64 GPa using a combination of experimental and theoretical approaches. The experimental data, namely, the maximal and minimal values of the product of the longitudinal sound velocity and refractive index n.V-L, were obtained from the 3D scanning of elastic inhomogeneities in compressed samples of argon using the technique of time-domain Brillouin scattering. These inhomogeneities, caused by elastic anisotropy of solid argon, were revealed to be about twice as strong as those reported in the earlier experiments using classical Brillouin light scattering (BLS). To derive the V-L values, we used the refractive index obtained here from ab initio calculations which also permitted us to rule out any contribution to the amplitude of the observed elastic inhomogeneities of the hexagonal close-packed phase of argon, proposed to coexist with the fcc phase at high pressures. From the measured C-ij (P), we derived pressure dependence of shear modulus of the fcc argon G(H) (P) using the Voigt-Reuss-Hill approximation and found a very good agreement with the earlier G(P) obtained from shear sound velocities in the classical BLS measurements. Our results agree very well with the earlier predictions based on a relatively simple many-body model employing the Buckingham pair potential. Finally, our measurements show a much weaker change of the Cauchy discrepancy (C-12 - C-44 - 2P) of the fcc argon with pressure than reported in all earlier experimental and theoretical works.
机译:使用实验和理论方法相结合的方法,在12至64 GPa的高压下确定了具有面心立方(fcc)结构的固体氩的单晶弹性模量C-ij,剪切模量G和齐纳各向异性比A。实验数据,即纵向声速和折射率n.V-L乘积的最大值和最小值,是使用时域布里渊散射技术从3D扫描氩气压缩样品中的弹性不均匀性获得的。这些由固态氩的弹性各向异性引起的不均匀性,其强度大约是早期使用经典布里渊光散射(BLS)的实验所报道的强度的两倍。为了得出VL值,我们使用了从头算计算得出的折射率,这也使我们可以排除对六方密堆积六方氩气所观察到的弹性不均匀性振幅的任何贡献,建议与fcc共存相在高压下。从测量的C-ij(P),我们使用Voigt-Reuss-Hill近似推导fcc氩气G(H)(P)的剪切模量与压力的关系,并发现与获得的早期G(P)有很好的一致性从经典BLS测量中的切变声速得出。我们的结果与基于采用白金汉对势的相对简单的多体模型的早期预测非常吻合。最后,我们的测量结果显示,带压力的fcc氩的柯西误差(C-12-C-44-2P)的变化要比所有早期的实验和理论工作中的弱得多。

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  • 来源
    《Physical review》 |2019年第22期|224102.1-224102.10|共10页
  • 作者单位

    Le Mans Univ, LAUM, UMR 6613 CNRS, Ave Olivier Messiaen, F-72085 Le Mans 9, France;

    Le Mans Univ, LAUM, UMR 6613 CNRS, Ave Olivier Messiaen, F-72085 Le Mans 9, France;

    Univ Paris 13, LSPM, UPR 3407 CNRS, F-93430 Villetaneuse, France;

    Le Mans Univ, LAUM, UMR 6613 CNRS, Ave Olivier Messiaen, F-72085 Le Mans 9, France;

    Le Mans Univ, LAUM, UMR 6613 CNRS, Ave Olivier Messiaen, F-72085 Le Mans 9, France;

    Le Mans Univ, LAUM, UMR 6613 CNRS, Ave Olivier Messiaen, F-72085 Le Mans 9, France;

    Le Mans Univ, IMMM, UMR 6283 CNRS, Ave Olivier Messiaen, F-72085 Le Mans 9, France;

    Russian Acad Sci, Prokhorov Gen Phys Inst, Moscow 119991, Russia;

    Le Mans Univ, LAUM, UMR 6613 CNRS, Ave Olivier Messiaen, F-72085 Le Mans 9, France;

    Univ Paris 13, LSPM, UPR 3407 CNRS, F-93430 Villetaneuse, France;

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