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Origin of multi-level switching and telegraphic noise in organic nanocomposite memory devicesopen access

Authors
Song, YounggulJeong, HyunhakChung, SeungjunAhn, Geun HoKim, Tae-YoungJang, JingonYoo, DaekyoungJeong, HeejunJavey, AliLee, Takhee
Issue Date
Sep-2016
Publisher
Nature Publishing Group
Keywords
RESISTIVE MEMORY; 1/F NOISE; DIFFUSION NOISE; INTEGRATION; MECHANISM; ELEMENTS; CELL
Citation
Scientific Reports, v.6, pp.1 - 9
Indexed
SCIE
SCOPUS
Journal Title
Scientific Reports
Volume
6
Start Page
1
End Page
9
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/13036
DOI
10.1038/srep33967
ISSN
2045-2322
Abstract
The origin of negative differential resistance (NDR) and its derivative intermediate resistive states (IRSs) of nanocomposite memory systems have not been clearly analyzed for the past decade. To address this issue, we investigate the current fluctuations of organic nanocomposite memory devices with NDR and the IRSs under various temperature conditions. The 1/f noise scaling behaviors at various temperature conditions in the IRSs and telegraphic noise in NDR indicate the localized current pathways in the organic nanocomposite layers for each IRS. The clearly observed telegraphic noise with a long characteristic time in NDR at low temperature indicates that the localized current pathways for the IRSs are attributed to trapping/de-trapping at the deep trap levels in NDR. This study will be useful for the development and tuning of multi-bit storable organic nanocomposite memory device systems.
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