SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINT
The kinetics of non-equilibrium stripe domain structure of ferroelectric tryglycine sulfate crystal has been studied within the temperature interval near the Curie point by the atomic force microscopy technique in the contact mode of the piezoelectric response. It is shown that under the experimenta...
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doaj-57ff6d388df84943a6f2b7e230b335cf2020-11-24T21:10:44ZengVoronezh State UniversityКонденсированные среды и межфазные границы1606-867X1606-867X2017-03-01191425010.17308/kcmf.2017.19/175SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINTGolitsyna Olga M.0Drozhdin Sergey N.1Korobova Alla D.2Chulakova Valeriya O.3Cand. Sci. (Phys.-Math.), Assistant Professor, Voronezh State UniversityDr. Sci. (Phys.), Professor, Head of Department, Voronezh State UniversityCand. Sci. (Phys.-Math.), Assistant Professor, Voronezh State Universitypostgraduate student, Voronezh State UniversityThe kinetics of non-equilibrium stripe domain structure of ferroelectric tryglycine sulfate crystal has been studied within the temperature interval near the Curie point by the atomic force microscopy technique in the contact mode of the piezoelectric response. It is shown that under the experimental conditions: i) average velocities <v> of the development of the domains along the crystallographic [100] direction are greater than along [001] due to the greater magnitude of the electric eld acting on the sections of the domain boundaries with a smaller radius of curvature; ii) the ratio of the total perimeter of domain boundaries to the number of domains, i. e. the average perimeter of the domain, is almost constant upon time and increases with the distance from the Curie point; iii) a marked change in the magnitude of the total surface charge of a crystal is observed only near T C during the rst 30 minutes after passing the phase transition, because in these conditions the crystal is an open system, sensitive to external in uences, and it is characterized by non-conservative order parameter; iiii) the total perimeter L of the domain walls increases when approaching T C , and its temperature behavior does not obey power law L ~ {(T C – T)/T C } h, predicted by the thermodynamic theory of ferroelectricity with the exponent h = 0.25.atomic force microscopytriglycine sulphatedomain structureCurie pointkineticscoef cient of unipolarityvelocity of the domain wallsperimeter of domains. |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Golitsyna Olga M. Drozhdin Sergey N. Korobova Alla D. Chulakova Valeriya O. |
spellingShingle |
Golitsyna Olga M. Drozhdin Sergey N. Korobova Alla D. Chulakova Valeriya O. SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINT Конденсированные среды и межфазные границы atomic force microscopy triglycine sulphate domain structure Curie point kinetics coef cient of unipolarity velocity of the domain walls perimeter of domains. |
author_facet |
Golitsyna Olga M. Drozhdin Sergey N. Korobova Alla D. Chulakova Valeriya O. |
author_sort |
Golitsyna Olga M. |
title |
SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINT |
title_short |
SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINT |
title_full |
SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINT |
title_fullStr |
SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINT |
title_full_unstemmed |
SPONTANEOUS KINETICS OF THE DOMAIN STRUCTURE OF TRIGLYCINE SULFATE NEAR THE CURIE POINT |
title_sort |
spontaneous kinetics of the domain structure of triglycine sulfate near the curie point |
publisher |
Voronezh State University |
series |
Конденсированные среды и межфазные границы |
issn |
1606-867X 1606-867X |
publishDate |
2017-03-01 |
description |
The kinetics of non-equilibrium stripe domain structure of ferroelectric tryglycine sulfate crystal has been studied within the temperature interval near the Curie point by the atomic force microscopy technique in the contact mode of the piezoelectric response. It is shown that under the experimental conditions: i) average velocities <v> of the development of the domains along the crystallographic [100] direction are greater than along [001] due to the greater magnitude of the electric eld acting on the sections of the domain boundaries with a smaller radius
of curvature; ii) the ratio of the total perimeter of domain boundaries to the number of domains, i. e. the average perimeter of the domain, is almost constant upon time and increases with the distance from the Curie point; iii) a marked change in the magnitude of the total surface charge of a crystal is observed only near T C during the rst 30 minutes after passing the phase transition, because in these conditions the crystal is an open system, sensitive to external in uences, and it is characterized by
non-conservative order parameter; iiii) the total perimeter L of the domain walls increases when approaching T C , and its temperature behavior does not obey power law L ~ {(T C – T)/T C } h, predicted by the thermodynamic theory of ferroelectricity with the exponent h = 0.25. |
topic |
atomic force microscopy triglycine sulphate domain structure Curie point kinetics coef cient of unipolarity velocity of the domain walls perimeter of domains. |
work_keys_str_mv |
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1716755488895401984 |