论文标题
硼掺杂对单晶钻石中散装和表面声音子的影响
The Effects of Boron Doping on the Bulk and Surface Acoustic Phonons in Single-Crystal Diamond
论文作者
论文摘要
我们使用Brillouin-Mandelstam光散射光谱谱图报告了未蛋白和硼掺杂的单晶钻石膜中散装和表面声音子的研究结果。用拉曼光谱法监测光学声子在同一样品中的演变。发现声音子的频率和组速度随着硼掺杂浓度的增加而非单调降低,揭示了明显的声子软化。与未掺杂的钻石相比,剪切水平水平和高频伪式声音声子的变化分别为〜15%和〜12%。由于硼掺杂,大块纵向和横向声音子的速度相应降低。光子声子的频率在低硼浓度下不受影响,但在高掺杂水平下的频率很大。原始和高度掺杂样品的声子结构的密度功能理论计算证实了钻石中的硼掺杂导致声子软化。获得的结果对掺杂的钻石中的热传输具有重要意义,这是对超宽波段电子电子的有希望的材料。
We report the results of the investigation of bulk and surface acoustic phonons in the undoped and boron-doped single-crystal diamond films using the Brillouin-Mandelstam light scattering spectroscopy. The evolution of the optical phonons in the same set of samples was monitored with Raman spectroscopy. It was found that the frequency and the group velocity of acoustic phonons decrease non-monotonically with the increasing boron doping concentration, revealing pronounced phonon softening. The change in the velocity of the shear horizontal and the high-frequency pseudo-longitudinal acoustic phonons in the degenerately doped diamond, as compared to the undoped diamond, was as large as ~15% and ~12%, respectively. As a result of boron doping, the velocity of the bulk longitudinal and transverse acoustic phonons decreased correspondingly. The frequency of the optical phonons was unaffected at low boron concentration but experienced a strong decrease at the high doping level. The density-functional-theory calculations of the phonon band structure for the pristine and highly-doped sample confirm the phonon softening as a result of boron doping in diamond. The obtained results have important implications for thermal transport in heavily doped diamond, which is a promising material for ultra-wide-band-gap electronics.