Comment on some articles regarding magnetization switching and computing using strain-mediated multiferroic composites
arXiv:1501.05941 · doi:10.1142/S2010324716300012
Abstract
This posting addresses the incorrect information (about my papers) and analysis provided in the following articles: arXiv:1405.4000/Nanotechnology 26, 245202 (2015), arXiv:1412.7765/Scientific Reports 4, 7553 (2014), Appl. Phys. Lett. 105, 176101 (2014), arXiv:1407.2140/Appl. Phys. Lett. 105, 072408 (2014), arXiv:1402.5356/Appl. Phys. Lett. 104, 232403 (2014), Appl. Phys. Lett. 103, 232401 (2013), arXiv:1005.5358/Appl. Phys. Lett. 97, 173105 (2010)
References in corpus (16)
- Weak ferromagnetism and magnetoelectric coupling in bismuth ferrite
- Multiferroics: different ways to combine magnetism and ferroelectricity
- Identification of the dominant precession damping mechanism in Fe, Co, and Ni by first-principles calculations
- Giant Magnetoelectric Effect via Strain-Induced Spin-Reorientation Transitions in Ferromagnetic Films
- Effect of the surface polarization in polar perovskites studied from first principles
- The Magnetoelectric Effect in Transition Metal Oxides: Insights and the Rational Design of New Materials from First Principles
- Energy-efficient magnetoelastic non-volatile memory
- Magneto-elastic universal logic gate: A non-volatile, error-resilient Boolean logic gate with ultra-low energy-delay product
- Ultra-low-energy non-volatile straintronic computing using single multiferroic composites
- Ultra-low-energy computing paradigm using giant spin Hall devices
- Critical analysis and remedy of switching failures in straintronic logic using Bennett clocking in the presence of thermal fluctuations
- Separating read and write units in multiferroic devices
- Area-Delay-Energy Tradeoffs of Strain-Mediated Multiferroic Devices
- Electric field-induced magnetization switching in interface-coupled multiferroic heterostructures: A highly-dense, non-volatile, and ultra-low-energy computing paradigm
- Dynamical systems study in single-phase multiferroic materials
- Landauer limit of energy dissipation in a magnetostrictive particle
Cited by in corpus (4)
- Estimating spin diffusion length and spin Hall angle from spin pumping-induced inverse spin Hall voltages
- Determining complex spin mixing conductance and spin diffusion length from spin pumping experiments in magnetic insulator/heavy metal bilayers
- Quantized Topological Charges of Ferroelectric Skyrmions in Two-Dimensional Multiferroic Materials
- Colossal stability of antiferromagnetically exchange coupled nanomagnets