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首页> 外文期刊>Journal of Physics. Condensed Matter >Computer simulation study of low-energy excitations of silicate glasses
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Computer simulation study of low-energy excitations of silicate glasses

机译:硅酸盐玻璃低能激发的计算机模拟研究

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Ten silicate and aluminosilicate glasses with different number densities and connectivities were studied by molecular dynamics simulation using the computer program DL-POLY [1]. The radial distribution functions, phonon densities of states and flexibilities of the glass networks were determined, and compared with those determined for silica [2]. The large-scale flexibility of silica was found to be similar to that of some of the glasses studied in this work, particularly in relation to rigid-unit-mode-type motions. The degree of localization of vibrations in fully networked glasses was found to be similar to that in silica, but the vibrations in glasses containing non-bridging oxygen atoms were found to be more localized. This is thought to be due to clustering of alkali cations, which in turn necessarily produces clusters of tetrahedra. [References: 28]
机译:使用计算机程序DL-POLY [1]通过分子动力学模拟研究了十个不同密度和连接度的硅酸盐和铝硅酸盐玻璃。确定了径向分布函数,状态的声子密度和玻璃网络的挠性,并将其与二氧化硅的测定函数进行了比较[2]。发现二氧化硅的大规模柔韧性类似于在这项工作中研究的某些玻璃的柔韧性,特别是在刚性单位模态运动方面。发现在全网状玻璃中振动的局域化程度与二氧化硅相似,但是在包含非桥接氧原子的玻璃中的振动局域化程度更高。认为这是由于碱金属阳离子的聚集,其继而必然产生四面体的簇。 [参考:28]

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