activity
20172019
most citedSpin-orbit-torque driven magnetoimpedance in Pt-layer/magnetic-ribbon heterostructures

16 citations · 16 across the 1 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall2019

Exchange bias training effect in IrMn-layer/ferromagnetic-ribbon heterostructures probed with magnetoimpedance

Mohammadreza Hajiali, Mohammad Javad Kamali Ashtiani, Loghman Jamilpanah +1

The exchange-bias training effect in IrMn-layer/ferromagnetic-ribbon heterostructure is studied by performing magnetoimpedance (MI) measurements. Asymmetric, hysteretic and single…

physics.app-ph2019

Controlling Magnetization of Gr/Ni Composite for Application in High Performance Magnetic Sensors

M. R. Hajiali, L. Jamilpanah, Z. Sheykhifard +8

Graphene (Gr), a well-known 2D material, has been under intensive investigation in the last decade due to its high potential applications in industry and advanced technological ele…

cond-mat.mes-hall2018

Coexistence of exchange bias training effect and spin-orbit torque in IrMn-layer/ferromagnetic-ribbon heterostructures via magnetoimpedance effect

M. R. Hajiali, L. Jamilpanah, J. Shoa e Gharehbagh +5

We investigate a possible correlation between spin orbit torque (SOT) and exchange-bias (EB) in IrMn-layer/ferromagnetic-ribbon heterostructure by performing magnetoimpedance (MI)…

physics.app-ph2018

Effect of sputter deposited ZnO thin layers on magnetoimpedance response and field sensitivity of Co-based micro-wires

A. Dadsetan, M. Almasi Kashi, S. M. Mohseni +1

Semiconductive ZnO has shown to be a fascinating element for application in high-performance sensors. ZnO with various thicknesses (87-500 nm) was deposited on the surface of Co-ba…

cond-mat.mes-hall201716 cited

Spin-orbit-torque driven magnetoimpedance in Pt-layer/magnetic-ribbon heterostructures

M. R. Hajiali, S. Morteza Mohseni, L. Jamilpanah +3

When a flow of electron passes through a paramagnetic layer with strong spin-orbit-coupling such as platinum (Pt), a net spin current is produced via spin Hall effect (SHE). This s…