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‘Soft’ phonon modes,structured diffuse scattering and the crystal chemistry of Fe-bearing sphalerites

机译:“软”声子模式,结构性扩散散射和含铁闪锌矿的晶体化学

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摘要

Electron diffraction has been used to carefully investigate the reciprocal lattices of a range of iron-bearing sphalerites looking for evidence of Fe clustering and/or Fe/Zn ordering in the form of either additional satellite reflections or a structured diffuse intensity distribution accompanying the strong Bragg reflections of the underlying sphalerite-type average structure. While a highly structured diffuse intensity distribution in the form of transverse polarized f110g sheets of diffuse intensity has been detected and found to be characteristic of all compositions,it does not appear to arise from Fe clustering and/or Fe/Zn ordering. Rather inherently low frequency,and therefore strongly thermally excited,phonon modes propagating along reciprocal space directions perpendicular to each of the six /110S real space directions of the average structure are suggested to be responsible for these f110g sheets of diffuse intensity. Monte Carlo simulation (for a range of Zn–S,Zn–Zn and S–S interaction strengths) and subsequent Fourier transformation is used to confirm the existence of these low-frequency phonon modes of distortion as well as to show that they are an intrinsic,predictable property of the corner-connected tetrahedral structure of sphalerite. The low-frequency phonon modes involve coupled (Zn,Fe) and S motion in one-dimensional strings along /110S real space directions.
机译:电子衍射已被用于仔细研究一系列含铁闪锌矿的倒易晶格,以寻找铁团簇和/或铁/锌有序的证据,这些簇以附加的卫星反射或强布拉格效应伴随的结构化扩散强度分布的形式出现底层闪锌矿型平均结构的反射。尽管已经检测到以高度分散的横向极化f110g片形式的高度结构化的扩散强度分布,并且发现它是所有成分的特征,但它似乎并非源于Fe团簇和/或Fe / Zn有序化。沿垂直于平均结构的六个/ 110S实际空间方向中的每个垂直方向的相互空间方向传播的固有的低频固有频率,因此是强烈的热激发声子模式,是造成这些f110g片状散射强度的原因。蒙特卡罗模拟(针对一系列Zn-S,Zn-Zn和S-S相互作用强度)和随后的傅里叶变换用于确认这些低频声子畸变模式的存在,并表明它们是闪锌矿角连接四面体结构的固有,可预测的特性。低频声子模式涉及沿/ 110S实际空间方向的一维字符串中的(Zn,Fe)和S运动耦合。

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