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Unusual Force Constants Guided Distortion-Triggered Loss of Long-Range Order in Phase Change Materials

机译:不寻常的力量常量在相变材料中引导失真损失的远程顺序

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摘要

Unusual force constants originating from the local charge distribution in crystalline GeTe and Sb2Te3 are observed by using the first-principles calculations. The calculated stretching force constants of the second nearest-neighbor Sb-Te and Ge-Te bonds are 0.372 and −0.085 eV/Å2, respectively, which are much lower than 1.933 eV/Å2 of the first nearest-neighbor bonds although their lengths are only 0.17 Å and 0.33 Å longer as compared to the corresponding first nearest-neighbor bonds. Moreover, the bending force constants of the first and second nearest-neighbor Ge-Ge and Sb-Sb bonds exhibit large negative values. Our first-principles molecular dynamic simulations also reveal the possible amorphization of Sb2Te3 through local distortions of the bonds with weak and strong force constants, while the crystalline structure remains by the X-ray diffraction simulation. By identifying the low or negative force constants, these weak atomic interactions are found to be responsible for triggering the collapse of the long-range order. This finding can be utilized to guide the design of functional components and devices based on phase change materials with lower energy consumption.
机译:通过使用第一原理计算,观察来自晶体gete和Sb2te3中的局部电荷分布的异常力常数。第二最近邻的Sb-Te和Ge的碲键的计算拉伸力常数是0.372和-0.085伏特/ A2,分别,其比所述第一最近相邻键的1.933伏特/ A2低得多,虽然它们的长度是与相应的第一邻邻债券相比,只有0.17埃和0.33埃。此外,第一和第二最近邻GE-GE和SB-SB键的弯曲力常数表现出大的负值。我们的第一原理分子动态模拟还通过诸如弱强和强力常数的键的局部扭曲揭示了Sb2te3的可能的,而晶体结构保持通过X射线衍射模拟。通过识别低或负力常数,发现这些弱原子相互作用是负责触发远程顺序的崩溃。该发现可用于指导基于具有较低能耗的相变材料设计功能部件和器件。

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