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Change in the Lattice Configuration of Nanothin Space-Dissipative Structures Formed in an Amorphous Film

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Abstract

Nanothin space-dissipative structures (SDSs) of hexagonal selenium formed in an amorphous film are investigated by transmission electron microscopy. It is established that the nanothin SDS of hexagonal selenium with a linear fan-shaped system of flexural contours in the electron-microscopy image is initial for the formation of the nanothin SDS of hexagonal selenium with a nonlinear fan-shaped system of flexural contours in the electron-microscopy image. It is shown that the formation of the nanothin SDS of hexagonal selenium with a nonlinear fan-shaped system of flexural contours in the electron-microscope image results in a change in the geometry of the nanothin-SDS lattice from Euclidean to Riemannian.

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Correspondence to I. V. Nikolaenko.

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Original Russian Text © V.B. Malkov, I.V. Nikolaenko, G.P. Shveikin, V.G. Pushin, A.V. Malkov, B.V. Shulgin, O.V. Malkov, 2018, published in Doklady Akademii Nauk, 2018, Vol. 478, No. 6, pp. 649–651.

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Malkov, V.B., Nikolaenko, I.V., Shveikin, G.P. et al. Change in the Lattice Configuration of Nanothin Space-Dissipative Structures Formed in an Amorphous Film. Dokl. Phys. 63, 61–63 (2018). https://doi.org/10.1134/S1028335818020118

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  • DOI: https://doi.org/10.1134/S1028335818020118

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