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2015 ; 5
(ä): 10571
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Modular Approach to Spintronics
#MMPMID26066079
Camsari KY
; Ganguly S
; Datta S
Sci Rep
2015[Jun]; 5
(ä): 10571
PMID26066079
show ga
There has been enormous progress in the last two decades, effectively combining
spintronics and magnetics into a powerful force that is shaping the field of
memory devices. New materials and phenomena continue to be discovered at an
impressive rate, providing an ever-increasing set of building blocks that could
be exploited in designing transistor-like functional devices of the future. The
objective of this paper is to provide a quantitative foundation for this building
block approach, so that new discoveries can be integrated into functional device
concepts, quickly analyzed and critically evaluated. Through careful benchmarking
against available theory and experiment we establish a set of elemental modules
representing diverse materials and phenomena. These elemental modules can be
integrated seamlessly to model composite devices involving both spintronic and
nanomagnetic phenomena. We envision the library of modules to evolve both by
incorporating new modules and by improving existing modules as the field
progresses. The primary contribution of this paper is to establish the ground
rules or protocols for a modular approach that can build a lasting bridge between
materials scientists and circuit designers in the field of spintronics and
nanomagnetics.