论文标题
石墨的非谐声和异常热膨胀
Anharmonic Phonons and Anomalous Thermal Expansion of Graphite
论文作者
论文摘要
我们已经使用晶格动力学和声子的非态性计算石墨的各向异性热膨胀,这表明由于沿着C-axis的各种声音而出现了高温到高温的600 K平面中的负热膨胀(NTE),并且沿C轴沿C轴上升高到高温。虽然NTE源于在60 MeV的宽范围内的横向声子的非谐声性,但沿C轴的大正膨胀在很大程度上是由于纵向光学声子模式约为16 MeV,并且沿C轴的线性可压缩性大。发现石墨中的各向异性键合沿C轴偏振的横向和纵向声子模式的能量范围很大,这是导致异常的热膨胀行为的原因。这种行为与其他几乎各向同性的六角形结构(如Water-Ice)形成鲜明对比,后者在狭窄的声子范围内显示出较小的温度范围内的异常热膨胀。
We have investigated the anisotropic thermal expansion of graphite using ab-initio calculation of lattice dynamics and anharmonicity of the phonons, which reveal that the negative thermal expansion (NTE) in the a-b plane below 600 K and very large positive thermal expansion along the c-axis up to high temperatures arise due to various phonons polarized along the c-axis. While the NTE arises from the anharmonicity of transverse phonons over a broad energy range up to 60 meV, the large positive expansion along the c-axis occurs largely due to the longitudinal optic phonon modes around 16 meV and a large linear compressibility along the c-axis. The hugely anisotropic bonding in graphite is found to be responsible for wide difference in the energy range of the transverse and longitudinal phonon modes polarized along the c-axis, which are responsible for the anomalous thermal expansion behavior. This behaviour is in contrast to other nearly isotropic hexagonal structures like water-ice, which show anomalous thermal expansion in a small temperature range arising from a narrow energy range of phonons.