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High frequency sound and the boson peak in amorphous silica

机译:非晶硅中的高频声和玻色子峰

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We present the results of extensive molecular dynamics computer simulations in which the high frequency dynamics of silica, i.e. for frequencies ν > 0.5 THz, is investigated in the viscous liquid state as well as in the glass state. We characterize the properties of high frequency sound modes by analyzing J_l(q, ν) and J_t(q, ν), the longitudinal and transverse current correlation function, respectively. For wave-vectors q > 0.4 A~(-1) the spectra are sitting on top of a flat background. The dynamic structure factor S(q, ν) exhibits for q > 0.23 A~(-1) a boson peak which is located nearly independent of q around 1.7 THz and for which the intensity scales approximately linearly with temperature. We show that the low frequency part of the boson peak is mainly due to the elastic scattering of transverse acoustic modes with frequencies around 1 THz. The strength of this scattering depends on q and is largest around q = 1.7 A~(-1), the location of the first sharp diffraction peak in the static structure factor. By studying S(q, ν) for different system sizes we show that strong finite size effects are present in the low frequency part of the boson peak in that for small systems part of its intensity is missing. We discuss the consequences of these finite size effects for the structural relaxation.
机译:我们提供了广泛的分子动力学计算机模拟的结果,其中在粘性液态和玻璃态下研究了二氧化硅的高频动力学,即ν> 0.5 THz的频率。我们分别通过分析纵向和横向电流相关函数J_l(q,ν)和J_t(q,ν)来表征高频声音模式的特性。对于q> 0.4 A〜(-1)的波矢量,光谱位于平坦的背景之上。动态结构因子S(q,ν)对于q> 0.23 A〜(-1)表现出一个玻色子峰,该玻色子峰几乎独立于q在1.7 THz附近,并且强度随温度近似线性变化。我们显示玻色子峰的低频部分主要是由于横向声模的弹性散射,其频率约为1 THz。该散射的强度取决于q,并且在q = 1.7 A〜(-1)(静态结构因子中第一个尖锐衍射峰的位置)附近最大。通过研究不同系统尺寸的S(q,ν),我们表明,玻色子峰的低频部分存在强烈的有限尺寸效应,而对于小系统,强度的一部分缺失。我们讨论了这些有限尺寸效应对结构松弛的影响。

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