Nanoindentation-induced phase transformation and structural deformation of monocrystalline germanium: A molecular dynamics simulation investigation

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Abstract

Molecular dynamics simulations were conducted to study the nanoindentation of monocrystalline germanium. The path of phase transformation and distribution of transformed region on different crystallographic orientations were investigated. The results indicate the anisotropic behavior of monocrystalline germanium. The nanoindentationinduced phase transformation from diamond cubic structure to β-tin-Ge was found in the subsurface region beneath the tool when indented on the (010) plane, while direct amorphization was observed in the region right under the indenter when the germanium was loaded along the [101] and [111] directions. The transformed phases extend along the < 110 > slip direction of germanium. The depth and shape of the deformed layers after unloading are quite different according to the crystal orientation of the indentation plane. The study results suggest that phase transformation is the dominant mechanism of deformation of monocrystalline germanium film in nanoindentation. © 2013 Lai et al.; licensee Springer.

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Lai, M., Zhang, X., & Fang, F. (2013). Nanoindentation-induced phase transformation and structural deformation of monocrystalline germanium: A molecular dynamics simulation investigation. Nanoscale Research Letters, 8(1), 1–9. https://doi.org/10.1186/1556-276X-8-353

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