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Phonon dynamics in AlN lattice contaminated by oxygen

机译:AlN晶格中被氧污染的声子动力学

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The phonon dynamics of wurtzite aluminum nitride contaminated by oxygen were investigated by employing the Raman back scattering, the Fourier Transform Infrared (FT-IR) reflectivity and absorption, and the Brillouin scattering techniques on unseeded polycrystalline samples of A1N built of single crystallites 1-5 mm in size. The six Raman active zone center optic modes were observed and identified. Throughout the oxygen contamination range (approx 1, approx 2, and approx 6 at. percent) of three samples investigated, the widths of the principal Raman modes were found to decrease with increasing the oxygen content in the single crystal. This behavior is interpreted as a change in the nature of the oxygen defect when the oxygen concentration exceeds 1 at. percent. The FT-IR reflectivity spectrum exhibits two-mode behavior at low oxygen concentration, one-mode behavior tends to be dominant when the oxygen concentration increases, and only one-mode behavior can be observed at high oxygen concentration. These changes in the reststrahlen band with oxygen concentration support the hypothesis of a transition in the oxygen accommodation defect as the concentration of oxygen increases. The oxygen effects on the A1N optical parameters were investigated by calculating these optical parameters from the reflectivity data of single crystallites differing in their oxygen concentration. The FT-IR absorption measurements showed several absorption bands in the multiple-phonon region. A tentative interpretation is proposed in which these bands are considered to be due to oxygen impurity absorption and to a combination of several phonon branches at the Brillouin-zone boundaries. The absorption spectrum in the one-phonon region allowed us to obtain a reliable data on the phonon density of states function in bulk A1N. Lastly, three different configurations were used in Brillouin scattering measurements to achieve a complete determination of the elastic stiffness constants of A1N.
机译:通过使用拉曼反向散射,傅立叶变换红外(FT-IR)反射率和吸收率以及布里渊散射技术,对单晶1-5制成的A1N多晶样品进行了研究,研究了被氧污染的纤锌矿型氮化铝的声子动力学。尺寸观察并确定了六个拉曼活动区中心光学模式。在所研究的三个样品的整个氧污染范围内(约1,约2和约6 at。%),发现主要拉曼模式的宽度随着单晶中氧含量的增加而减小。该行为被解释为当氧气浓度超过1 at时,氧气缺陷的性质发生了变化。百分。 FT-IR反射率光谱在低氧浓度下表现出双模式行为,当氧浓度增加时,单模式行为趋于占优势,而在高氧浓度下只能观察到单模式行为。随着氧浓度的增加,reststrahlen带中的这些变化支持了氧容纳缺陷随着氧浓度增加而转变的假设。通过从氧浓度不同的单晶的反射率数据计算这些光学参数,研究了氧对AlN光学参数的影响。 FT-IR吸收测量显示在多声子区域中有几个吸收带。提出了一种试探性的解释,其中这些带被认为是由于氧杂质的吸收以及布里渊区边界处几个声子分支的结合所致。单声子区域中的吸收光谱使我们能够获得有关本体A1N中状态函数的声子密度的可靠数据。最后,在布里渊散射测量中使用了三种不同的配置,以完全确定A1N的弹性刚度常数。

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