DocumentCode :
3602870
Title :
Magnetic Stochastic Oscillators: Noise-Induced Synchronization to Underthreshold Excitation and Comprehensive Compact Model
Author :
Mizrahi, Alice ; Locatelli, Nicolas ; Matsumoto, Rie ; Fukushima, Akio ; Kubota, Hitoshi ; Yuasa, Shinji ; Cros, Vincent ; Joo-Von Kim ; Grollier, Julie ; Querlioz, Damien
Author_Institution :
Inst. d´Electron. Fondamentale, Univ. Paris Sud, Orsay, France
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
Superparamagnetic tunnel junctions (SMTJs) are noise powered stochastic oscillators, which can harness thermal energy through phenomena such as stochastic resonance and noise-induced synchronization. This enables them to operate with the minimal externally supplied energy, and therefore, makes them promising candidates for implementing bioinspired computing schemes. These applications require understanding how SMTJs can be integrated into CMOS circuits. In this paper, we present a compact model of SMTJ, written in the VerilogA language, that can be used within standard integrated circuit design tools. This compact model is based on the Néel-Brown model and allows for fast simulations. We show that this model can reproduce the experimental characterization of a sample subjected to different values of dc currents. Then, we definitively demonstrate the validity of the model by confronting it to the experimental results in the case of a complex phenomenon: noise-induced synchronization.
Keywords :
integrated circuit design; integrated circuit modelling; magnetic tunnelling; oscillators; superparamagnetism; synchronisation; CMOS circuits; Néel-Brown model; SMTJ; VerilogA language; bioinspired computing schemes; experimental characterization; minimal externally supplied energy; noise powered stochastic oscillators; noise-induced synchronization; standard integrated circuit design tools; stochastic resonance; superparamagnetic tunnel junctions; thermal energy; Computational modeling; Integrated circuit modeling; Junctions; Magnetic tunneling; Oscillators; Semiconductor device modeling; Synchronization; Bioinspired computing; Spintronics; bioinspired computing; magnetic tunnel junctions; magnetic tunnel junctions (MTJs); spintronics; stochastic resonance;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2439736
Filename :
7118728
Link To Document :
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