Straintronics: a new trend in micro-and nanoelectronics and materials science

AA Bukharaev, AK Zvezdin, AP Pyatakov… - Physics …, 2018 - iopscience.iop.org
The term'straintronics' refers to a new research area in condensed matter physics, in which
strain engineering methods and strain-induced physical effects in solids are used to develop …

Стрейнтроника—новое направление микро-и наноэлектроники и науки о материалах

АА Бухараев, АК Звездин, АП Пятаков… - Успехи физических …, 2018 - ufn.ru
Стрейнтроникой (straintronics) называют новое направление в физике
конденсированного состояния вещества, использующее методы деформационной …

[HTML][HTML] Magnetic straintronics: Manipulating the magnetization of magnetostrictive nanomagnets with strain for energy-efficient applications

S Bandyopadhyay, J Atulasimha… - Applied Physics Reviews, 2021 - pubs.aip.org
The desire to perform information processing, computation, communication, signal
generation, and related tasks, while dissipating as little energy as possible, has inspired …

Reservoir computing with dipole-coupled nanomagnets

H Nomura, H Kubota, Y Suzuki - Reservoir Computing: Theory, Physical …, 2021 - Springer
An idea to use a magnetic nano-dots array for a reservoir computing is introduced. The
mechanism of how the nonlinear calculation is carried out in the magnetic system is …

Magnetoelectric memory based on ferromagnetic/ferroelectric multiferroic heterostructure

J Wang, A Chen, P Li, S Zhang - Materials, 2021 - mdpi.com
Electric-field control of magnetism is significant for the next generation of large-capacity and
low-power data storage technology. In this regard, the renaissance of a multiferroic …

Straintronic nanomagnetic logic using self-biased dipole coupled elliptical nanomagnets

P Pathak, D Mallick - IEEE Transactions on Magnetics, 2022 - ieeexplore.ieee.org
This work delineates the thermally stable, self-biased straintronic nanomagnetic logic (NML)
by leveraging the dipole coupling between an array of nanomagnets using only two …

Reliability of magnetoelastic switching of nonideal nanomagnets with defects: A case study for the viability of straintronic logic and memory

D Winters, MA Abeed, S Sahoo, A Barman… - Physical Review …, 2019 - APS
Magnetoelastic (straintronic) switching of bistable magnetostrictive nanomagnets is an
extremely energy-efficient switching methodology for (magnetic) binary switches that has …

Energy-efficient switching of nanomagnets for computing: straintronics and other methodologies

N D'Souza, A Biswas, H Ahmad, MS Fashami… - …, 2018 - iopscience.iop.org
The need for increasingly powerful computing hardware has spawned many ideas
stipulating, primarily, the replacement of traditional transistors with alternate'switches' that …

Low energy barrier nanomagnet design for binary stochastic neurons: Design challenges for real nanomagnets with fabrication defects

MA Abeed, S Bandyopadhyay - IEEE Magnetics Letters, 2019 - ieeexplore.ieee.org
Much attention has been focused on the design of low energy barrier nanomagnets (LBMs),
whose magnetizations vary randomly in time owing to thermal noise, for use in binary …

An observable effect of spin inertia in slow magneto-dynamics: Increase of the switching error rates in nanoscale ferromagnets

R Rahman, S Bandyopadhyay - Journal of Physics: Condensed …, 2021 - iopscience.iop.org
Abstract The Landau–Lifshitz–Gilbert (LLG) equation, used to model magneto-dynamics in
ferromagnets, tacitly assumes that the angular momentum associated with spin precession …