用非弹性冷中子散射研究玻璃质锗的振动特性

A. Leadbetter, D. Litchinsky
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引用次数: 14

摘要

对多晶(六方)和玻璃体GeO2进行了非弹性冷中子散射实验。在ω[图形省略]300 cm-1的范围内,两种材料都观察到相干效应,并且可以估计多晶体光谱的两个平均声学分支的近似形式。对于玻璃,相干效应可以用波矢量守恒条件来解释,操作方式与多晶体相似。估计了两个平均声学分支的近似形状,以及在等效布里渊带边界附近的另一个分支的频率。在非相干近似的基础上对数据进行了检验,以确定ω < 600 cm-1处玻璃频率分布G(ω)的主要特征,其中最突出的峰在300 cm-1附近。G(ω)的低频峰极好地解释了低温热容。将中子散射结果与玻璃体GeO2的红外光谱和拉曼光谱进行了比较,结果表明,每种情况下G(ω)与光谱之间的关系不同,但红外吸收系数可能相当接近G(ω),除非低于200 cm-1左右。并与玻璃体GeO2模型的理论频率分布进行了比较。该玻璃的中子能谱在13 cm-1处有一个峰值,估计包含约0.05%的总模态,并归因于与某些特殊但迄今尚未确定的结构缺陷相关的共振模态。
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Vibrational properties of vitreous germania by inelastic cold neutron scattering
Inelastic cold neutron scattering experiments have been carried out on polycrystalline (hexagonal) and vitreous GeO2. Coherence effects are observed for both materials for ω [graphic omitted] 300 cm–1 and it has been possible to estimate the approximate form of two average acoustic branches of the spectrum for the polycrystal. For the glass the coherence effects may be interpreted in terms of wave vector conservation conditions operating in a similar manner to that in polycrystals. The approximate shape of two average acoustic branches has been estimated together with the frequency of a further branch near the equivalent of the Brillouin zone boundary. The data have also been examined on the basis of the incoherent approximation to determine the main features of the frequency distribution G(ω) for the glass at ω < 600 cm–1, in which region the most prominent peak is near 300 cm–1.The low frequency peaks in G(ω) account extremely welll for the low temperature heat capacity. The neutron scattering results have been compared with the infra-red and Raman spectra of vitreous GeO2 showing that the relation between G(ω) and the spectra is different in each case but that the infra-red absorption coefficient probably approximates reasonably well to G(ω), except below about 200 cm–1. A comparison has also been made with a theoretical frequency distribution for a model of vitreous GeO2. The neutron spectra for the glass show a peak at 13 cm–1, estimated to contain about 0.05 % of the total modes and attributed to resonance modes associated with some particular, but so far unidentified, structural defects.
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