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The Mechanism of Interblock-Boundary Formation and the Effect of Disorientation-Vector Sign Variation along Torn Interblock Boundaries in Nanothin Spatial Dissipative Structures

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Abstract

By analyzing the patterns of flexural extinction contours present on the electron-microscopic images of nanothin (~80 nm) spatial dissipative structures (SDSs) of hexagonal selenium, i.e., nanothin crystals with elastic rotational curvature of the lattice around [001], the processes of formation of torn interblock boundaries in these structures are investigated. The effect of changing the disorientation-vector sign along the torn interblock torsion boundaries is observed. A model of formation of interblock torsion boundaries is developed for nanothin selenium SDSs, the lattice of which undergoes an elastic rotational curvature around [001].

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Correspondence to I. V. Nikolaenko or A. V. Malkov.

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Translated by V. Bukhanov

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Malkov, V.B., Nikolaenko, I.V., Shveikin, G.P. et al. The Mechanism of Interblock-Boundary Formation and the Effect of Disorientation-Vector Sign Variation along Torn Interblock Boundaries in Nanothin Spatial Dissipative Structures. Dokl. Phys. 63, 266–268 (2018). https://doi.org/10.1134/S1028335818070042

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  • DOI: https://doi.org/10.1134/S1028335818070042

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