电介质
介电损耗
无定形固体
材料科学
偶极子
电场
分子动力学
硅酸钠
非平衡态热力学
损耗系数
凝聚态物理
矿物学
化学物理
化学
热力学
计算化学
光电子学
复合材料
物理
有机化学
量子力学
作者
Shingo Urata,Hiroyuki Hijiya,Kazuhiko Niwano,Jun Matsui
摘要
Abstract To theoretically explore amorphous materials with a sufficiently low dielectric loss, which are essential for next‐generation communication devices, the applicability of a nonequilibrium molecular dynamics simulation employing an external alternating electric field was examined using alkaline silicate glass models. In this method, the dielectric loss is directly evaluated as the phase shift of the dipole moment from the applied electric field. This method enabled us to evaluate the dielectric loss in a wide frequency range from 1 GHz to 10 THz. It was observed that the dielectric loss reaches its maximum at a few THz. The simulation method was found to qualitatively reproduce the effects of alkaline content and alkaline type on the dielectric loss. Furthermore, it reasonably reproduced the effect of mixed alkalines on the dielectric loss, which was observed in our experiments on sodium and/or potassium silicate glasses. Alkaline mixing was thus found to reduce the dielectric loss.
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