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Local structural variability and the intermediate phase window in network glasses

机译:网络眼镜的局部结构变异性和中间相窗口

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Recent experimental work has shown that the width of the intermediate phase varies considerably in chalcogenide glasses containing Ge/As/Se. As the chemical composition is varied within a series of glasses, three phases are observed. As the mean coordination of the glass is increased, the floppy phase evolves through the intermediate phase (rigid but unstressed) into the rigid and stressed phase. Here, using an extensive study of computer-generated networks, we show that the intermediate phase is caused by self-organization. This is only possible on networks where the single transition, from the floppy to the rigid and stressed phase, is second order in the absence of self-organization, which leads the network to be responsive to self-organization. This occurs when the structural variability—a measure of inhomogeneities within the glasses—exceeds a threshold value. The width of the intermediate phase is associated with the local structural variability. Above the threshold value, a large structural variability leads to a wider intermediate phase, which we refer to as the intermediate phase window.
机译:最近的实验工作表明,在含有Ge / As / Se的硫属化物玻璃中,中间相的宽度变化很大。随着一系列玻璃中化学成分的变化,观察到三相。随着玻璃的平均配比增加,软盘阶段通过中间阶段(刚性但未受力)演变成刚性和受力阶段。在这里,通过对计算机生成网络的广泛研究,我们表明中间阶段是由自组织引起的。只有在没有自组织的情况下,从软盘到僵化和受压阶段的单次转换是二阶的网络上才有可能,这导致网络对自组织作出响应。当结构可变性(一种衡量眼镜内部不均匀性的指标)超过阈值时,就会发生这种情况。中间相的宽度与局部结构变异性相关。在阈值以上,较大的结构变异性会导致更宽的中间相,我们将其称为中间相窗口。

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