Investigation of metal-insulator transition in magnetron sputtered samarium nickelate thin films

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Investigation of metal-insulator transition in magnetron sputtered samarium nickelate thin films ( investigation-metal-insulator-transition-magnetron-sputtered )

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4. INVESTIGATION OF METAL-INSULATOR TRANSITION Figure 4.7: Local conductivity in certain regions of sample S-36AOw surface. - Local current map in the sample revealed a distinct behaviour of some of the surface regions. Some, predominantly large rounded grains (unmasked region), appear to have a significantly smaller conductivity that the majority of grains at the surface (region of the surface masked with green overlayer). Left - local current map, right - topography image with masked well-conducting region. The images were collected at 336 K. The comparison between the data shows that well-conducting region has a several times higher average current than the poorly- conducting region, and the difference increases with temperature. The bias voltage is 0.1 V. 96

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