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Thermal properties of clustered systems of mixed composition: the temperature response of Si-Al clusters studied quantum mechanically

机译:混合组成的簇系统的热性能:量子力学研究Si-Al簇的温度响应

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This work has been undertaken with the purpose of extending the study of the thermal properties of natiosized systems beyond the mono-elemental cases so far considered. The structures adopted to this purpose consist on small columnar silicon clusters covered on both sides by an aluminum overlayer and have therefore to be regarded as the finite-size analogous of macroscopic electronic devices. The thermal response of these structures is evaluated under dynamical conditions and the transient is generated by increasing the overall kinetic energy in the system. The calculations are based on real-time, real-space implementations of the semiempirical Hartree-Fock and Density Functional theories. The results show the occurrence of phenomena similar to recristallization and melting in the bulk and illustrate the dependence of these effects on the cluster size and composition. © 2004 Elsevier B.V. All rights reserved.
机译:开展这项工作的目的是将对纳米系统热特性的研究扩展到迄今为止尚未考虑的单元素情况。为此目的采用的结构由两侧覆盖有铝覆盖层的小的柱状硅簇组成,因此应被视为类似于宏观电子设备的有限尺寸。在动态条件下评估这些结构的热响应,并通过增加系统中的整体动能来产生瞬态。这些计算基于半经验Hartree-Fock和密度泛函理论的实时,空间实现。结果表明,大块中出现了类似于反吹和熔化的现象,并说明了这些效应对团簇尺寸和组成的依赖性。 &复制; 2004 Elsevier B.V.保留所有权利。

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