Low-voltage driven ZnS:Mn MIS and MISIM thin film electroluminescent devices with Eu2O3 insulator layer

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Low-voltage driven ZnS:Mn MIS and MISIM thin film electroluminescent devices with Eu2O3 insulator layer

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dc.contributor.author Jayaraj, M K
dc.contributor.author Vallabhan, C P G
dc.date.accessioned 2011-10-29T12:07:31Z
dc.date.available 2011-10-29T12:07:31Z
dc.date.issued 1990
dc.identifier.other J. Phys. D: Appl. Phys. 23 (1990) 1706-1710.
dc.identifier.uri http://dyuthi.cusat.ac.in/purl/2429
dc.description.abstract AC thin film electroluminescent devices of MIS and MISIM have been fabricated with a novel dielectric layer of Eu2O3 as an insulator. The threshold voltage for light emission is found to depend strongly on the frequency of excitation source in these devices. These devices are fabricated with an active layer of ZnS:Mn and a novel dielectric layer of Eu2O3 as an insulator. The observed frequency dependence of brightness-voltage characteristics has been explained on the basis of the loss characteristic of the insulator layer. Changes in the threshold voltage and brightness with variation in emitting or insulating film thickness have been investigated in metal-insulator-semiconductor (MIS) structures. It has been found that the decrease in brightness occurring with decreasing ZnS layer thickness can be compensated by an increase in brightness obtained by reducing the insulator thickness. The optimal condition for low threshold voltage and higher stability has been shown to occur when the active layer to insulator thickness ratio lies between one and two. en_US
dc.description.sponsorship Cochin University of Science and Technology en_US
dc.language.iso en en_US
dc.publisher IOP Publishing en_US
dc.subject Eu2O3 insulator layer en_US
dc.subject MISIM thin film electroluminescent en_US
dc.title Low-voltage driven ZnS:Mn MIS and MISIM thin film electroluminescent devices with Eu2O3 insulator layer en_US
dc.type Working Paper en_US
dc.contributor.faculty Technology en_US
dc.identifier.url doi:10.1088/0022-3727/23/12/033 en_US


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