DocumentCode
1077211
Title
Numerical Simulation of Low-Frequency Noise in Polysilicon Thin-Film Transistors
Author
Pichon, L. ; Boukhenoufa, A. ; Cordier, C. ; Cretu, B.
Author_Institution
UMR CNRS 6164, Rennes
Volume
28
Issue
8
fYear
2007
Firstpage
716
Lastpage
718
Abstract
Numerical simulations of low-frequency noise are carried out in two technologies of N-channel polysilicon thin-film transistors (TFTs) biased from weak to strong inversion and operating in the linear mode. Noise is simulated by generation/recombination processes. The contribution of grain boundaries on the noise level is higher in the strong inversion region. The microscopic noise parameter that is deduced from numerical simulations is lower than the macroscopic one defined according to the Hooge empirical relationship and deduced from noise measurements. The higher macroscopic value is attributed to the drain-current crowding induced by nonconducting spots in the devices due to structural defects. The ratio of these two noise parameters can be considered as an indicator to qualify TFT technology.
Keywords
elemental semiconductors; inorganic polymers; semiconductor device noise; silicon; thin film transistors; N-channel polysilicon thin-film transistors; Si; generation process; low-frequency noise; numerical simulation; recombination process; 1f noise; Crystallization; Grain boundaries; Green function; Impedance; Low-frequency noise; Noise generators; Noise level; Numerical simulation; Thin film transistors; Generation–recombination (GR); impedance field method (IFM); low-frequency (l/f) noise; numerical simulation; polysilicon thin-film transistors (TFTs);
fLanguage
English
Journal_Title
Electron Device Letters, IEEE
Publisher
ieee
ISSN
0741-3106
Type
jour
DOI
10.1109/LED.2007.900849
Filename
4278380
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