Cheng Lu, Zheng Wei, Jia Lemin, Huang Feng
State Key Laboratory of Optoelectronic Materials and Technologies, School of Materials, Sun Yat-sen University, Guangzhou 510275, China.
Heliyon. 2020 Oct 23;6(10):e05277. doi: 10.1016/j.heliyon.2020.e05277. eCollection 2020 Oct.
Mid-infrared reflection spectra of - and -plane bulk AlN show a reststrahlen band related to the formation of phonon polaritons. However, it is worth noting that there are additional hump- and spike-shaped peaks in the spectra, which cannot be explained by the phonon-polaritons model applicable to optically isotropic crystals. Here, considering the existence of quasiphonons in wurtzite crystals, we suppose that the extra peaks result from the generation of quasiphonon polaritons (QPPs) induced by the coupling between photon and quasi-transverse optical phonon. On the basis of this point, a QPPs model applicable to optically anisotropic wurtzite crystals is developed, which successfully explains the reststrahlen band of bulk AlN. Besides, on the ground of our model, a series of reststrahlen band of bulk AlN under various configurations is also predicted and presented.
c 面和 m 面块状 AlN 的中红外反射光谱显示出与声子极化激元形成相关的剩余射线带。然而,值得注意的是,光谱中存在额外的驼峰状和尖峰状峰,这无法用适用于光学各向同性晶体的声子极化激元模型来解释。在此,考虑到纤锌矿晶体中准声子的存在,我们假设额外的峰是由光子与准横向光学声子之间的耦合诱导产生的准声子极化激元(QPPs)所致。基于这一点,开发了一种适用于光学各向异性纤锌矿晶体的 QPPs 模型,该模型成功解释了块状 AlN 的剩余射线带。此外,基于我们的模型,还预测并给出了块状 AlN 在各种配置下的一系列剩余射线带。