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Why DVDs work the way they do: The nanometer-scale mechanism of phase change in Ge-Sb-Te alloys

机译:DVD为什么以这种方式发挥作用:Ge-Sb-Te合金的纳米级相变机理

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摘要

Present-day multimedia strongly relies on re-writable phase-change optical memory. We have found that Ge2Sb2Te5 (GST), the material of choice in DVD-RAM, does not possess the conventional rock-salt structure as previously believed but that Ge and Sb atoms are displaced from the ideal rocksalt positions. Amorphization of both GeTe and GST results in a significant shortening of covalent bonds and a decrease in the mean-square relative displacement concomitant with a drastic change in short-range order. The order-disorder transition in GeTe and GST is primarily due to a flip of Ge atoms from octahedral positions into tetrahedral positions without rupture of strong covalent bonds. The driving force for the flip are strained Ge Te bonds in the crystalline phase. It is this nature of the transformation that ensures large changes in reflectivity, fast disk performance and repeatable switching over millions of cycles. (c) 2006 Elsevier B.V. All rights reserved.
机译:当今的多媒体强烈依赖于可重写的相变光学存储器。我们已经发现,DVD-RAM中选择的材料Ge2Sb2Te5(GST)不具有以前认为的常规岩石盐结构,但是Ge和Sb原子已从理想的岩石盐位置移开了。 GeTe和GST的非晶化都会导致共价键的显着缩短,均方根相对位移的降低,同时伴随短程顺序的急剧变化。 GeTe和GST中的有序无序过渡主要是由于Ge原子从八面体位置翻转到四面体位置而没有破坏强共价键。翻转的驱动力是在结晶相中应变的Ge Te键。正是这种转换的本质确保了反射率的巨大变化,快速的磁盘性能以及数百万次循环的可重复切换。 (c)2006 Elsevier B.V.保留所有权利。

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