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Original Articles

Basal glide of dislocations in ice observed by synchrotron radiation topography

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Pages 2853-2868 | Received 07 May 1998, Accepted 14 Jan 1999, Published online: 12 Aug 2009

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T. Hondoh. (2015) Dislocation mechanism for transformation between cubic ice Ic and hexagonal ice Ih. Philosophical Magazine 95:32, pages 3590-3620.
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Juliette Chevy, François Louchet, Paul Duval & Marc Fivel. (2012) Creep behaviour of ice single crystals loaded in torsion explained by dislocation cross-slip. Philosophical Magazine Letters 92:6, pages 262-269.
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Articles from other publishers (7)

Takeo Hondoh. (2019) Dissociation Behavior of Dislocations in Ice. Crystals 9:8, pages 386.
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T Richeton, LT Le, T Chauve, M Bernacki, S Berbenni & M Montagnat. (2017) Modelling the transport of geometrically necessary dislocations on slip systems: application to single- and multi-crystals of ice. Modelling and Simulation in Materials Science and Engineering 25:2, pages 025010.
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Sérgio H. Faria, Ilka Weikusat & Nobuhiko Azuma. (2014) The microstructure of polar ice. Part II: State of the art. Journal of Structural Geology 61, pages 21-49.
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Paul Duval. 2013. The Science of Solar System Ices. The Science of Solar System Ices 227 251 .
Erland M. Schulson & Paul Duval. 2010. Creep and Fracture of Ice. Creep and Fracture of Ice 77 100 .
Maurine Montagnat, Paul Duval, Pierre Bastie, Bernard Hamelin & Volodya Ya. Lipenkov. (2003) Lattice distortion in ice crystals from the Vostok core (Antarctica) revealed by hard X-ray diffraction; implication in the deformation of ice at low stresses. Earth and Planetary Science Letters 214:1-2, pages 369-378.
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I. Baker. (2003) Imaging dislocations in ice. Microscopy Research and Technique 62:1, pages 70-82.
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