Журналы →  Materialy Elektronnoi Tekhniki →  2011 →  №4 →  Назад

MATERIALS SCIENCE AND TECHNOLOGY. DIELECTRICS
Название The spreading of the polarization of the ferroelectric granules in the electrically insulated lithium niobate foiles
Автор R. N. Zhukov, D. A. Kiselev, M. D. Malinkovich, Yu. N. Parkhomenko, E. A. Vygovskaya, O. V. Toropova
Информация об авторе

FSAEI of Higher Professional Education National University of Science and Technology MISiS

R. N. Zhukov, D. A. Kiselev, M. D. Malinkovich, Yu. N. Parkhomenko, E. A. Vygovskaya, O. V. Toropova

Реферат

The ferroelectric properties of the slim lithium niobate foiles are researched by method of the piezoresponse force microscopy. The foiles are obtained by the high frequency magnetron sputtering of the lithium niobate single crystal target, on the surfase {110} of the silicon, covered with the thin layer of SiO2. It is shown, that the effect of the granules` polarization condition area spreading with the piezoresponse amplitude decrease, is observed after the polarization by the positive or negative sample surface area potential, using the conductive probe of the atomic force microscope. At the same time, the depolarization takes place in discrete steps, i. e. the Barkhausen effect on the nanometric level has a place.

Ключевые слова Slim lithium niobate foiles, piezoresponse force microscopy, relaxation, depolarization prosess
Библиографический список

1. Kohlstedt, H. Nanoelectronics and information technology: Advanced electronic material and novel devices / H. Kohlstedt, H. Ishiwara. − Weinheim: Wiley−VCH, 2002. − Chp. 14. − 387 p.
2. Lee, T.−H. Investigation of LiNbO3 thin films grown on Si substrate using magnetron sputter / T.−H. Lee, F.−T. Hwang, C.−T. Lee, H.−Y. Lee // Mater. Sci. and Eng. B. − 2007. − V. 136. − P. 92.
3. Gautier, B. Nanoscale observation of the distribution of the polarization orientation of ferroelectric domains in lithium niobate thin films / B. Gautier , V. Bornand // Thin Solid Films. − 2006. − V. 515. − P. 1592.
4. Ievlev, V. M. Struktura i svoystva plenok LiNbO3, poluchennykh metodom vysokochastotnogo magnetronnogo raspyleniya / V. M. Ievlev, A. V. Kostyuchenko, E. K. Belonogov, M. P. Sumets, V. M. Vakhtel', N. V. Sidorov, M. N. Palatnikov // Perspektivnye materialy. − 2010. − Vyp. 3. − S. 26.
5. Kiselev, D. A. P'ezo− i piroelektricheskie petli gisterezisa unipolyarnykh tonkikh plenok tsirkonata−titanata svintsa / D. A. Kiselev, A. L. Kholkin, A. A. Bogomolov, O. N. Sergeeva, E. Yu. Kaptelov, I. P. Pronin // PZhTF. − 2008. − T. 34. − S. 28.
6. Bornand, V. Growth and nanoscale ferroelectric investigation of radiofrequency−sputtered LiNbO3 thin films / V. Bornand, B. Gautier, Ph. Papet // Mater. Chem. and Phys. − 2004. − V. 86. − P. 340.
7. Kalinin, S. V. Local polarization dynamics in ferroelectric materials / S. V. Kalinin, A. N. Morozovska, L. Q. Chen, B. J. Rodriguez // Rep. Prog. Phys. − 2010. − V. 73. − P. 056502.
8. Shur, V. Ya. Skachki Barkgauzena pri dvizhenii odinochnoy segnetoelektricheskoy domennoy stenki / V. Ya. Shur, V. L. Kozhevnikov, D. V. Pelegov, E. V. Nikolaeva, E. I. Shishkin // FTT. − 2001. − T. 43. − C. 1089.

Language of full-text русский
Полный текст статьи Получить
Назад