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Original Articles

The production of electrostatic potential differences in sodium chloride crystals by plastic compression and bending

Pages 801-816 | Received 16 May 1964, Published online: 20 Aug 2006

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Read on this site (11)

T.K. Chaki & J.C.M. Li. (1987) Mobile dislocations and internal stresses in the latent hardening of lithium fluoride crystals. Philosophical Magazine A 55:3, pages 317-327.
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Toshihiko Kataoka, Luigi Colombo & J.C. M. Li. (1984) Dislocation charges in Ca2+‐doped KC1 effects of impurity concentration and temperature. Philosophical Magazine A 49:3, pages 409-423.
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S. Rácz, G. Turchányi & J. Janszky. (1983) On the dislocation photoconduction and its application to study the deformation mechanism in ionic crystals. Radiation Effects 75:1-4, pages 235-240.
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G. Turchányi, J. Janszky, S. Rácz & I. Tarján. (1982) Simultaneous effect of UV-irradiation and deformation. Radiation Effects 64:1-4, pages 175-179.
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W.H. Robinson, J.L. Tallon & P.H. Sutter. (1977) The temperature dependence of the dislocation charge in potassium chloride. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 36:6, pages 1405-1427.
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M.T. Sprackling. (1970) The plastic bending of NaCl. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 21:173, pages 913-921.
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WilliamA. Brantley & CharlesL. Bauer. (1969) Electroacoustic investigations of charged dislocations in NaC1. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 20:165, pages 441-454.
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M.T. Sprackling. (1968) The annealing of slightly bent AgCl single crystals. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 18:154, pages 691-696.
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K.M. Turner & R.W. Whitworth. (1968) Movement of dislocations in sodium chloride crystals in an electric field. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 18:153, pages 531-538.
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R.A. Stuart & R.W. Whitworth. (1967) Potential differences produced in sodium chloride crystals by plastic deformation at 4·2°K. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 15:137, pages 1057-1058.
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R.W. Whitworth. (1967) A measurement of the charge on edge dislocations in a sodium chloride crystal. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 15:134, pages 305-319.
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Articles from other publishers (25)

K. A. Chishko. (2023) Unambiguous coupling between acoustic and electromagnetic emissions in plastically deformed crystals. Low Temperature Physics 49:11, pages 1199-1212.
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Rajdeep Sharma. (2015) Electro-elastic fields due to a point charge in a flexoelectric medium. Physica B: Condensed Matter 474, pages 9-14.
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N.D. Sharma, R. Maranganti & P. Sharma. (2007) On the possibility of piezoelectric nanocomposites without using piezoelectric materials. Journal of the Mechanics and Physics of Solids 55:11, pages 2328-2350.
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V. Hadjicontis, C. Mavromatou, T. N. Antsygina & K. A. Chishko. (2007) Mechanism of electromagnetic emission in plastically deformed ionic crystals. Physical Review B 76:2.
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R. Maranganti, N. D. Sharma & P. Sharma. (2006) Electromechanical coupling in nonpiezoelectric materials due to nanoscale nonlocal size effects: Green’s function solutions and embedded inclusions. Physical Review B 74:1.
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Huang Songyu & R. Labusch. (1992) Dislocation charges in KBr crystals. Journal of Physics and Chemistry of Solids 53:5, pages 651-655.
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David I. Ma, Syed B. Qadri, Martin C. Peckerar & Daniel McCarthy. (1991) Double-crystal X-ray topography characterization of an electrical-bias-induced stress variation in metal-oxide-semiconductor field effect transistors. Thin Solid Films 206:1-2, pages 18-26.
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G. Turchányi. (2006) Dislocation Photoconduction and Related Dislocation Memory Effects in KCl Crystals. Crystal Research and Technology 21:4, pages 531-536.
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B. K. Kardashev, S. B. Kustov, A. B. Lebedev, G. V. Berezhkova, P. P. Perstnev, F. Appel & U. Messerschmidt. (1985) Acoustic and Electron Microscopy Study of the Dislocation Structure in MgO Crystals. physica status solidi (a) 91:1, pages 79-87.
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E.E. Simonyi, B.A. Scott & E.A.D. White. (1976) Growth of epitaxial films of the organic conductor (TTF)(TCNQ). Materials Research Bulletin 11:3, pages 347-353.
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A R Anderson & H F Pollard. (1976) Dislocation damping and charge effects in irradiated bent sodium chloride crystals. Journal of Physics C: Solid State Physics 9:2, pages 247-258.
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R.A Menezes & W.D Nix. (1974) High temperature dislocation mobility in LiF part I. Charged dislocations in ionic crystals. Materials Science and Engineering 16:1-2, pages 57-66.
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B. K. Kardashev, S. P. Nikanorov & O. A. Voinova. (1974) Internal friction and charged dislocations in NaF crystals. Physica Status Solidi (a) 25:1, pages 359-366.
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G. Turchányi, M. Mátrai, J. Janszky & I. Tarján. (1974) Experimental data on the dislocation electric field in alkali halides. Acta Physica Academiae Scientiarum Hungaricae 35:1-4, pages 193-199.
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A. Tóth & J. L. Kiss. (1973) Estimation of the electric charge carried by dislocations in NaCl crystals. Physica Status Solidi (a) 19:1, pages K61-K64.
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G. A. Bielig. (1971) Variations of the Dislocation Damping Coefficient during Gamma Irradiation of NaCl Single Crystals. Journal of Applied Physics 42:12, pages 4758-4763.
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K. Itagaki. 1970. Advances in X-Ray Analysis. Advances in X-Ray Analysis 526 538 .
M Ohring, K.L Tai & E.S Machlin. (1969) A dislocation dynamics study in alkali halides as revealed by deformation currents. Materials Science and Engineering 4:5, pages 253-261.
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William A. Brantley & Charles L. Bauer. (1969) Effect of charged dislocations on dielectric, piezoelectric and elastic properties. Materials Science and Engineering 4:1, pages 29-38.
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K. Itagaki. (2019) X-Ray Topographic Study of Vibrating Dislocations in Ice Under an Ac Electric Field. Advances in X-ray Analysis 13, pages 526-538.
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Tsuyoshi Yoshi-yama, Michi-hiko Mannami & Kenzo Tanaka. (1968) Effects of Impurities on the Charged Dislocations in Sodium Chloride Single Crystals. Journal of the Physical Society of Japan 24:5, pages 1019-1026.
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A. R. ALLNATT, A. V. CHADWICK & P. PANTELIS. (1967) Voltages produced by Oxygen in Platinum-Sodium Chloride Crystal Cells. Nature 213:5082, pages 1226-1227.
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L. M. Belyaev & Yu. N. Martyshev. (1967) The triboluminescence spectrum of LiF crystals. Journal of Applied Spectroscopy 6:1, pages 70-72.
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F. Rueda & W. Dekeyser. (1966) Charge of Dislocations in Pure and γ-Irradiated LiF. physica status solidi (b) 17:2, pages 739-744.
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J. E. Caffyn, J. C. de Freitas & T. L. Goodfellow. (2006) Charged Dislocations in Sodium Chloride Crystals Containing Sodium Hydroxide. physica status solidi (b) 9:2, pages 333-340.
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