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Uncovering β-relaxations in amorphous phase-change materials

机译:在无定形相变材料中揭开β-松弛

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Relaxation processes are decisive for many physical properties of amorphous materials. For amorphous phase-change materials (PCMs) used in nonvolatile memories, relaxation processes are, however, difficult to characterize because of the lack of bulk samples. Here, instead of bulk samples, we use powder mechanical spectroscopy for powder samples to detect the prominent excess wings—a characteristic feature of β-relaxations—in a series of amorphous PCMs at temperatures below glass transitions. By contrast, β-relaxations are vanishingly small in amorphous chalcogenides of similar composition, which lack the characteristic features of PCMs. This conclusion is corroborated upon crossing the border from PCMs to non-PCMs, where β-relaxations drop substantially. Such a distinction implies that amorphous PCMs belong to a special kind of covalent glasses whose locally fast atomic motions are preserved even below the glass transitions. These findings suggest a correlation between β-relaxation and crystallization kinetics of PCMs, which have technological implications for phase-change memory functionalities.
机译:放松过程对于无定形材料的许多物理性质是决定性的。对于在非易失性存储器中使用的非晶相变材料(PCM),因此,由于缺乏散装样品,难以表征难以表征。这里,除了批量样品中,我们使用粉末样品来检测粉末样品以检测突出的过度翅膀 - 在玻璃过渡的温度下的一系列无定形PCM中的β-Leax的特征特征。相比之下,在类似组合物的无定形硫属化物中缺乏β-松弛,这缺乏PCM的特征。在将PCM的边界交叉到非PCM时,该结论是证实的,其中β-松弛显着下降。这种区别意味着非晶PCM属于一种特殊类型的共价玻璃,其局部快速原子运动甚至低于玻璃化转变。这些发现表明PCMS的β - 松弛和结晶动力学之间的相关性,其具有用于相变记忆功能的技术影响。

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