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Original Articles

Ionic transport and microwave spectra of TGS crystals

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Pages 129-135 | Published online: 16 Mar 2011

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G. I. Ovtchinnikova, A. V. Kutyshenko & N. D. Gavrilova. (1999) Ferroelectric—superionically conducting phase transition via NMR. Ferroelectrics 220:1, pages 243-248.
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Articles from other publishers (6)

G. I. Ovchinnikova, I. Yu. Polyakova, E. S. Ivanova, R. V. Gainutdinov, N. V. Belugina, A. L. Tolstikhina & V. V. Grebenev. (2015) Influence of the electrical conductivity on dielectric characteristics of a triglycine sulfate crystal over a wide frequency range. Physics of the Solid State 57:3, pages 544-548.
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G. I. Ovchinnikova, I. Yu. Polyakova, A. V. Kozar & A. P. Sukhorukov. (2013) The impedance-characteristic method in the study of specific temperature features of dielectric anomaly suppression in triglycine sulfate. Physics of Wave Phenomena 21:4, pages 300-303.
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G. I. Ovchinnikova, A. N. Soloshenko, N. V. Belugina, R. V. Gainutdinov & A. L. Tolstikhina. (2009) AFM study of the microwave effect on hydrogen-containing ferroelectric triglycine sulfate. Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques 3:5, pages 769-772.
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G.I. Ovchinnikova, Yu.A. Pirogov, F.V. Golikov & V.V. Merinov. (2004) Pre-transition phenomena in TGS crystal under microwave irradiation. Pre-transition phenomena in TGS crystal under microwave irradiation.
F.V. Golikov, G.I. Ovtchinnikova & Yu.A. Pirogov. (2002) Millimeter-wave properties of TGS ferroelectric crystal near phase transition. Millimeter-wave properties of TGS ferroelectric crystal near phase transition.
G.I. Ovtchinnikova, A.V. Sapronova & A.N. Soloshenko. (1998) The hop-and-turn conductivity mechanism in hydrogen bound ferroelectrics via microwave spectra. The hop-and-turn conductivity mechanism in hydrogen bound ferroelectrics via microwave spectra.

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