论文标题

语音各向异性对氟氧化物热电导率的影响

Implications of phonon anisotropy on thermal conductivity of fluorite oxides

论文作者

Adnan, Saqeeb, Jin, Miaomiao, Bryan, Matthew S, Manley, Michael E, Hurley, David H., Khafizov, Marat

论文摘要

对于具有关键热管理要求的一系列应用,氟氧化物是有吸引力的离子化合物。鉴于最新的报告暗示了此面部以三次立体晶体系统的各向异性热导率,我们对方向依赖性的声子组速度和寿命对氟氧化物的热运输的影响进行了详细的分析。我们证明,尽管声子寿命和组速度显着各向异性,但这类材料的大量导热率仍然各向同性。然而,在外部刺激下打破声子寿命的对称性,包括有限尺寸模拟细胞的非平衡分子动力学模拟中存在的边界散射会导致明显的热导率各向异性。我们观察到,为了准确测定热导率,重要的是要考虑声子特性,不仅沿着无弹性中子或X射线散射实验中的高对称性方向,而且沿较低对称性测量。我们的结果表明,与高对称性相比,某些低对称方向对热导率的贡献更大。

Fluorite oxides are attractive ionic compounds for a range of applications with critical thermal management requirements. In view of recent reports alluding to anisotropic thermal conductivity in this face-centered cubic crystalline systems, we perform a detailed analysis of the impact of direction-dependent phonon group velocities and lifetimes on the thermal transport of fluorite oxides. We demonstrate that the bulk thermal conductivity of this class of materials remains isotropic despite notable anisotropy in phonon lifetime and group velocity. However, breaking the symmetry of the phonon lifetime under external stimuli including boundary scattering present in nonequilibrium molecular dynamics simulations of finite size simulation cell gives rise to apparent thermal conductivity anisotropy. We observe that for accurate determination of thermal conductivity, it is important to consider phonon properties not only along high symmetry directions commonly measured in inelastic neutron or x-ray scattering experiments but also of those along lower symmetry. Our results suggests that certain low symmetry directions have a larger contribution to thermal conductivity compared to high symmetry ones.

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