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An efficient zero-order description of the fine structure in the infrared reflection band of cubic ionic crystals and the phonon-polariton dispersion using Lorentz gauge

机译:立方离子晶体红外反射带中的精细结构的有效零顺序描述和使用Lorentz计的声音 - 极性分散体

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摘要

The reflection of infrared light by ionic crystals with cubic symmetry such as lithium fluoride, LiF, is analyzed in terms of phonon-polaritons. In contrast to the conventional view on phonon-polaritons that uses the Coulomb gauge and assumes a purely local dielectric response of the material, we here develop an alternative description making use of the Lorentz gauge. This involves retarded interactions between charges, implying a non-local response of the material to electromagnetic radiation. The resulting new phonon-polariton dispersion relation features polaritons with negative group velocity in the frequency range in between the transverse (omega(T)) and longitudinal frequency (omega(L)). By contrast, the conventional description predicts, in zero order, the absence of any propagating polaritons in the frequency interval between omega(T) and omega(L). The new dispersion relation provides an efficient, zero-order description of the fine structure within the reststrahlen band of LiF. The local minimum near the middle of the reflectance band is due to excitation of a phonon-polariton whose energy and momentum matches that of the incoming photon. The Lorentz gauge description can also describe off-normal reflection and accounts for the experimentally observed widening of the reflection band with increasing angle of incidence. Published by AIP Publishing.
机译:在Phonon-Polaritomons方面分析了具有立方对称的离子晶体的红外光的反射,如氟化锂,LiF。相反,与使用库仑计的Phonon-Polariton上的传统视图并假设材料的纯粹局部介电响应,我们在这里开发了利用Lorentz测量仪的替代描述。这涉及电荷之间的延迟相互作用,暗示了材料对电磁辐射的非局部响应。由此产生的新的Phonon-Polariton色散关系具有在横向(OMEGA(T))和纵向频率(OMEGA(L))之间的频率范围内具有负群速度的极性孔。相反,传统描述以零顺序预测,在ω(t)和ω(L)之间的频率间隔中没有任何传播的极性子。新的色散关系提供了LiF的REStrahlen带内的精细结构的有效零级描述。局部最小值在反射频带中间的局部最小值是由于声子 - 极性电位的激励,其能量和动量与进入光子的电量相匹配。 Lorentz仪表描述还可以描述非正常反射,并且考虑到具有增加的入射角的实验观察到的反射带宽。通过AIP发布发布。

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