Visualization of Nanodomains in Lithium Niobate Single Crystals by Scanning Laser Confocal Raman Microscopy / Zelenovskiy P. S.,Shur V. Ya.,Kuznetsov D. K.,Mingaliev E. A.,Fontana M.,Bourson P. // PHYSICS OF THE SOLID STATE. - 2011. - V. 53, l. 1. - P. 109-113.

ISSN/EISSN:
1063-7834 / 1090-6460
Type:
Article
Abstract:
We demonstrated the possibility of application of scanning laser confocal Raman microscopy for visualization of the ferroelectric nanodomains in lithium niobate single crystals. The changes of the integrated intensity, half-width and frequency of several Raman lines in the vicinity of nanodomain boundaries were demonstrated. These nanodomains were formed after crystal heating by pulse laser. Recording of the spectral line parameters during two-dimensional scanning was used for the reconstruction of the nanodomain structure image.
Author keywords:
CRUCIBLE CZOCHRALSKI METHOD; FERROELECTRIC DOMAINS; PPLN-MICROSTRUCTURES; LINBO3; SPECTROSCOPY; IRRADIATION; PHONONS; GROWTH; LITAO3
DOI:
10.1134/S1063783411010367
Web of Science ID:
ISI:000287598600019
Соавторы в МНС:
Другие поля
Поле Значение
Month JAN
Publisher MAIK NAUKA/INTERPERIODICA/SPRINGER
Address 233 SPRING ST, NEW YORK, NY 10013-1578 USA
Language English
EISSN 1090-6460
Keywords-Plus CRUCIBLE CZOCHRALSKI METHOD; FERROELECTRIC DOMAINS; PPLN-MICROSTRUCTURES; LINBO3; SPECTROSCOPY; IRRADIATION; PHONONS; GROWTH; LITAO3
Research-Areas Physics
Web-of-Science-Categories Physics, Condensed Matter
Author-Email zelenovskiy@labfer.usu.ru
ResearcherID-Numbers Zelenovskiy, Pavel/L-7480-2016 Kuznetsov, Dmitry/K-8081-2015 Mingaliev, Eugene/A-5324-2012 Zelenovskiy, Pavel/H-7583-2012 Shur, Vladimir/J-9078-2015
ORCID-Numbers Zelenovskiy, Pavel/0000-0003-3895-4785 Mingaliev, Eugene/0000-0003-3926-8402
Funding-Acknowledgement Russian Foundation for Basic Research {[}10-02-96042-r-Ural-a, 10-02-00627-a]; Federal Agency on Education; Federal Target Program ``Research and scientific-pedagogical personnel of innovative Russia{''} {[}P870, P2127]; Federal Agency on Science and Innovations {[}02.740.11.0171, 02.552.11.7069]; ARCUS project initiated by Ministry of Foreign Affairs of France; Regional Council of Lorraine; National Centre of Science Researches of France (CNRS)
Funding-Text This research was made possible in part by Russian Foundation for Basic Research (grants nos. 10-02-96042-r-Ural-a, and 10-02-00627-a), by Federal Agency on Education, by Federal Target Program ``Research and scientific-pedagogical personnel of innovative Russia 2009-2013{''} (contracts P870 and P2127); by Federal Agency on Science and Innovations (contracts nos. 02.740.11.0171 and 02.552.11.7069); by ARCUS project initiated by Ministry of Foreign Affairs of France, the Regional Council of Lorraine, and National Centre of Science Researches of France (CNRS).
Number-of-Cited-References 26
Usage-Count-Last-180-days 1
Usage-Count-Since-2013 14
Journal-ISO Phys. Solid State
Doc-Delivery-Number 724TH