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作 者:周虹君[1] ZHOU Hong-Jun(Engineering Research Center of New Energy Storage Devices and Applications,Chongqing University of Arts and Sciences,Chongqing 402160,China)
机构地区:[1]重庆文理学院新型储能器件及应用工程研究中心,重庆402160
出 处:《原子与分子物理学报》2018年第5期879-883,共5页Journal of Atomic and Molecular Physics
基 金:重庆市教委科技项目(KJ160118)
摘 要:利用抛物型电子能谱模型,考虑到原子的非简谐振动,求出了SiC中原子振动的简谐系数与非简谐系数,用固体物理理论和方法,得到了SiC的热膨胀系数和格林乃森参量以及介电常数随温度变化的解析式,探讨了原子非简谐振动的影响.结果表明:SiC的格林乃森参量和热膨胀系数均随温度升高而非线性增大,而介电常数随温度升高而非线性减小;原子振动的非简谐项(特别是第二非简谐项)对SiC的热膨胀等热学性质和介电性能有重要影响,温度愈高,非简谐振动项的影响愈大.Harmonic coefficient and anharmonic coefficient of SiC atomic vibration is investigated by using parabola electron spectroscopy model in case of anharmonic vibration of atoms.By using theory and methods of solid-state physics,we get the thermal expansion coefficient and Grüneisen parameter of SiC and analytical expressions of dielectric constant with temperature,then the influence of atomic anharmonic vibration is also discussed.The results show that the Grüneisen parameter and thermal expansion coefficient of SiC nonlinear increases as temperature increased,while the dielectric constant decreases nonlinearly with increasing the temperature.The anharmonic terms(especially the second anharmonic terms)of the atomic vibration have an important influence on the thermal and dielectric properties of the thermal expansion.The higher the temperature,the more influence of anharmonic vibration terms.
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