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FERROELECTRIC/DIELECTRIC/COMPOSITES

Use of the Thermal Square Wave Method to Analyze Polarization State in Ferroelectric Materials

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Pages 63-75 | Received 18 Jan 2010, Published online: 20 Nov 2010

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N. E. Malysheva & O. V. Malyshkina. (2022) Temperature dependences of dielectric characteristics of sodium-lithium niobate porous ceramics. Ferroelectrics 591:1, pages 72-76.
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E. V. Barabanova, O. V. Malyshkina, Ya. V. Vorob’eva & P. S. Samsonova. (2019) Ferroelectric properties of composite films based on polystyrene. Integrated Ferroelectrics 196:1, pages 64-69.
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M.S. Shashkov, O.V. Malyshkina, E.V. Barabanova & J. Dec. (2016) Pyroelectric properties of the calcium-strontium-barium niobate single crystals. Ferroelectrics 499:1, pages 23-27.
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O.V. Malyshkina, A.A. Movchikova, O.N. Kalugina, M.S. Shashkov, Yu.A. Malyshkin, V.A. Golovnin & A.V. Daineko. (2012) Analysis of the Pyroelectric Response of Sandwich-Type Piezoelectric Ceramics with Inhomogeneous Polarization Distribution. Ferroelectrics 439:1, pages 95-101.
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O.V. Malyshkina, A.A. Movchikova, K. Penzov, M. Shashkov, R. Steinhausen, H.T. Langhammer & H. Beige. (2012) The Polarization Distribution in BTS Ceramics with Different Tin Concentration Profile. Ferroelectrics 429:1, pages 110-115.
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O. Malyshkina, V. Lisitsin, A. Movchikova, J. Dec & T. Lukasiewicz. (2012) The Pyroelectric Properties of SBN Crystals with Different Composition. Ferroelectrics 426:1, pages 230-235.
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O.V. Malyshkina, A.A. Movchikova, O.N. Kalugina & A.V. Daineko. (2011) Determination of Thermal Diffusivity Coefficient of Thin Films by Thermal Square Wave Method. Ferroelectrics 424:1, pages 28-35.
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Articles from other publishers (11)

Irina A. Chernyshova, Oleg S. Vereshchagin, Olga V. Malyshkina, Aleksey G. Goncharov, Igor A. Kasatkin, Mikhail N. Murashko, Anatoly A. Zolotarev & Olga V. Frank-Kamenetskaya. (2021) Tourmalines pyroelectric effect depending on the chemical composition and cation oxidation state. Journal of Solid State Chemistry 303, pages 122512.
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M. Rudziva, P. Sibanda, O. A. I. Noreldin & S. Goqo. (2021) On trigonometric cosine, square, sawtooth, and triangular wave‐type rotational modulations on triple‐diffusive convection in salted water. Heat Transfer 50:7, pages 6886-6914.
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L. Moroz & Anna Maslovskaya. (2020) Simulation of Nonlinear Pyroelectric Response of Ferroelectrics near Phase Transition: Fractional Differential Approach. Materials Science Forum 992, pages 843-848.
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L. I. Moroz & A. G. Maslovskaya. (2019) Fractional-Differential Model of Heat Conductivity Process in Ferroelectrics under the Intensive Heating Conditions. Mathematics and Mathematical Modeling:2, pages 29-47.
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Gunnar Suchaneck, Agnes Eydam & Gerald Gerlach. 2019. Handbook of Advanced Nondestructive Evaluation. Handbook of Advanced Nondestructive Evaluation 1419 1477 .
Gunnar Suchaneck, Agnes Eydam & Gerald Gerlach. 2018. Handbook of Advanced Non-Destructive Evaluation. Handbook of Advanced Non-Destructive Evaluation 1 59 .
O. V. Malyshkina, M. Yu. Gavalyan, G. S. Shishkov, I. A. Kaplunov, A. I. Kolesnikov & N. V. Aidinyan. (2016) Thermal characteristics of paratellurite single crystals by the rectangular thermal wave method. Physics of the Solid State 58:11, pages 2367-2372.
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O. V. Malyshkina, V. S. Lisitsin, J. Dec & T. Łukasiewicz. (2016) The effects of external influences on the distribution of polarization in calcium barium niobate crystals of differing composition. Bulletin of the Russian Academy of Sciences: Physics 80:5, pages 491-493.
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O. V. Malyshkina, O. N. Kalugina, M. Yu. Gavalyan & I. A. Kaplunov. (2015) Application of the TSW method for analyzing thermal characteristics of germanium. Physics of the Solid State 57:11, pages 2159-2163.
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O. V. Malyshkina, V. S. Lisitsin, J. Dec & T. Łukasiewicz. (2014) Pyroelectric and dielectric properties of calcium barium niobate single crystals. Physics of the Solid State 56:9, pages 1824-1827.
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A. A. Movchikova, O. V. Malyshkina & O. N. Kalugina. (2012) New method for determining the thermal diffusion coefficient of thin films using ferroelectric crystals. Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques 6:1, pages 33-36.
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