DocumentCode
81548
Title
Optimization and Evaluation of Variability in the Programming Window of a Flash Cell With Molecular Metal–Oxide Storage
Author
Georgiev, Vihar P. ; Markov, Stanislav ; Vila-Nadal, Laia ; Busche, Christoph ; Cronin, Leroy ; Asenov, Asen
Author_Institution
Device Modelling Group, Univ. of Glasgow, Glasgow, UK
Volume
61
Issue
6
fYear
2014
fDate
Jun-14
Firstpage
2019
Lastpage
2026
Abstract
We report a modeling study of a conceptual nonvolatile memory cell based on inorganic molecular metal-oxide clusters as a storage media embedded in the gate dielectric of a MOSFET. For the purpose of this paper, we developed a multiscale simulation framework that enables the evaluation of variability in the programming window of a flash cell with sub-20-nm gate length. Furthermore, we studied the threshold voltage variability due to random dopant fluctuations and fluctuations in the distribution of the molecular clusters in the cell. The simulation framework and the general conclusions of our work are transferrable to flash cells based on alternative molecules used for a storage media.
Keywords
MOSFET; flash memories; molecular electronics; random-access storage; MOSFET; flash cell; inorganic molecular metal-oxide clusters; molecular metal-oxide storage; multiscale simulation framework; nonvolatile memory cell; programming window; random dopant fluctuations; storage media; threshold voltage variability; Ash; Logic gates; Nonvolatile memory; Numerical models; Programming; Solid modeling; Substrates; Device variability; molecular electronics; multiscale modeling; nonvolatile memory (NVM); polyoxometalates (POMs); polyoxometalates (POMs).;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2014.2315520
Filename
6799206
Link To Document