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Original Articles

On the visibility of dislocations perpendicular to the optical axis by stress-induced birefringence in elastically and optically isotropic materials

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Pages 79-91 | Received 28 Jul 1981, Accepted 06 Aug 1982, Published online: 27 Sep 2006

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W.J. P. van Enckevort & M. Seal. (1988) Stress birefringence microscopy of dislocations in type-Ia natural diamond. Philosophical Magazine A 57:6, pages 939-954.
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Articles from other publishers (9)

N.Ed. Smirnov & P.I. Pronin. (2018) Dielectric and magnetic properties of continuum with dislocations. Physics Letters A 382:33, pages 2245-2250.
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P. I. Pronin & N. Ed. Smirnov. (2016) Absorption and generation of electromagnetic waves by structural inhomogeneities of solid. Moscow University Physics Bulletin 71:4, pages 349-355.
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P. I. Pronin & N. Ed. Smirnov. (2016) Electromagnetic wave propagation in a medium with defects. Moscow University Physics Bulletin 71:2, pages 155-160.
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T. Ouisse, D. Chaussende & L. Auvray. (2009) Micropipe-induced birefringence in 6H silicon carbide. Journal of Applied Crystallography 43:1, pages 122-133.
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W.J.P. Van Enckevort & F. Smet. (1990) Optical characterization of crystal dislocations: The case of bismuth germanate. Journal of Crystal Growth 102:1-2, pages 314-328.
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Beate Solcher, Gert Klöss & Peter Paufler. (1990) Slip band formation during bending of GaAs wafers. Zeitschrift für Kristallographie 192:3-4, pages 201-218.
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O. Boehnke & P. Paufler. (2006) On the initial stage of plastic deformation of sulphur‐doped gallium phosphide. Crystal Research and Technology 24:3, pages 307-315.
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K. Löschke. (1985) Phase-contrast microscopy in comparison with other light-microscopic methods for direct observation of dislocation lines in single crystals. physica status solidi (a) 90:2, pages 573-579.
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S.J. Shaibani & S.N. Buckley. (2011) Electron Ream-Induced Phase Transformation In M g A1 2 0 4 SPINEL . MRS Proceedings 51.
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