Mario Carpentieri

About Mario Carpentieri

Mario Carpentieri, With an exceptional h-index of 39 and a recent h-index of 30 (since 2020), a distinguished researcher at Università della Calabria, specializes in the field of micromagnetism, spintronics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Electrically Controlled All‐Antiferromagnetic Tunnel Junctions on Silicon with Large Room‐Temperature Magnetoresistance

Antiferromagnetic interlayer exchange coupled Co₆₈B₃₂/Ir/Pt multilayers

Antiferromagnetic interlayer exchange coupled Co68B32/Ir/Pt multilayers

Roadmap for unconventional computing with nanotechnology

Electrical Detection of Magnetic Skyrmions in a Magnetic Tunnel Junction (Adv. Electron. Mater. 1/2023).

All-antiferromagnetic electrically controlled memory on silicon featuring large tunneling magnetoresistance

Dynamical neural network based on spin transfer nano-oscillators

Skyrmions in nanorings: A versatile platform for skyrmionics

Mario Carpentieri Information

University

Position

Assistant researcher

Citations(all)

5518

Citations(since 2020)

3415

Cited By

3548

hIndex(all)

39

hIndex(since 2020)

30

i10Index(all)

96

i10Index(since 2020)

56

Email

University Profile Page

Google Scholar

Mario Carpentieri Skills & Research Interests

micromagnetism

spintronics

Top articles of Mario Carpentieri

Electrically Controlled All‐Antiferromagnetic Tunnel Junctions on Silicon with Large Room‐Temperature Magnetoresistance

Advanced Materials

2024/3/19

Antiferromagnetic interlayer exchange coupled Co₆₈B₃₂/Ir/Pt multilayers

Scientific Reports

2024/1/2

Antiferromagnetic interlayer exchange coupled Co68B32/Ir/Pt multilayers

Scientific Reports

2024/1/2

Electrical Detection of Magnetic Skyrmions in a Magnetic Tunnel Junction (Adv. Electron. Mater. 1/2023).

Advanced Electronic Materials

2023/1/1

All-antiferromagnetic electrically controlled memory on silicon featuring large tunneling magnetoresistance

arXiv preprint arXiv:2311.13828

2023/11/23

Dynamical neural network based on spin transfer nano-oscillators

IEEE Transactions on Nanotechnology

2023/11/10

Skyrmions in nanorings: A versatile platform for skyrmionics

Physical Review Applied

2023/10/16

All-electrical 9-bit skyrmion-based racetrack memory designed with laser irradiation

Nano Letters

2023/10/11

Sub micro-accelerometer based on spintronic technology: A design optimization

Solid-State Electronics

2023/10/1

Magnetomechanical Accelerometer Based on Magnetic Tunnel Junctions

Physical Review Applied

2023/9/5

Voltage-controlled magnetic anisotropy based physical unclonable function

Applied Physics Letters

2023/8/7

Evaluating spintronics-compatible implementations of Ising machines

Phys. Rev. Applied 20, 024005 – Published 2 August 2023

2023/4/9

Ultra-sensitive voltage-controlled skyrmion-based spintronic diode

Nanotechnology

2023/6/29

Spintronic Hodgkin-Huxley-Analogue Neuron Implemented with a Single Magnetic Tunnel Junction

Physical Review Applied

2023/6/2

Manipulation of magnetic solitons under the influence of DMI gradients

arXiv preprint arXiv:2305.15052

2023/5/24

Sub-harmonic excitation in passive spintronic diodes based on magnetic tunnel junctions

2023/5/15

A sub-micrometric spintronic-based accelerometer

2023/5/15

A single magnetic tunnel junction for the implementation of a spiking neuron

2023/5/15

Mario Carpentieri
Mario Carpentieri

H-Index: 24

Giovanni Finocchio
Giovanni Finocchio

H-Index: 28

Using magnetic tunnel junctions as unconventional computing devices

2023/5/15

See List of Professors in Mario Carpentieri University(Università della Calabria)