Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > IKBFU and University of Oviedo Physicists tested new research model on magnetic materials: Soft magnetic ferromagnetic microwires are used for magnetic field sensors, as well as for encoding and reading information

Valeria Kolesinkova
Valeria Kolesinkova

Abstract:
Laboratory of Novice Magnet Materials working in collaboration with Spanish scientists (the University of Oviedo, Spain) tested the Preisach model using interfacing Fe-based microwires. This research was made to check whether it is applicable for FORC-analysis and how real-life conditions affect it.

IKBFU and University of Oviedo Physicists tested new research model on magnetic materials: Soft magnetic ferromagnetic microwires are used for magnetic field sensors, as well as for encoding and reading information

Kaliningrad, Russia | Posted on April 24th, 2020

Soft magnetic ferromagnetic microwires are used for magnetic field sensors, as well as for encoding and reading information. Such microwires are used, for example, for the implementation of 3D geolocation in gadgets, as well as for tagging commercial fish, etc.

The sensors mainly consist of a system containing several closely spaced microwires. This research issue is relevant, and several world scientific groups from different countries (Spain, Slovakia, Brazil, Russia) are engaged in these studies.

MA Student at "Functional nanomaterials and modern applications", Valeria Kolesinkova:

"The FORC-analysis is one of the most well-known ways of magnet interaction analysis, based on the Preisach model, where the idea of a bistable microwire is introduced. To study various properties of magnetic (and not only) materials, we mainly use the well-known characterization methods, however, each method has its own applicability limits and this work shows the applicability limits of the method for analyzing magnetic interactions for ideal magnetic samples with bistable hysteresis loop. The study emphasizes the problems that can be encountered when working with this method in the framework of the Preisach model".

###

The results of the research were published in the Journal of Magnetism and Magnetic Materials (Q2). The research was funded by the 5-top-100 IKBFU project.

####

For more information, please click here

Contacts:
Denis Zhigulin

7-913-322-9355

@IKBFU

Copyright © IKBFU

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related Links

RELATED JOURNAL ARTICLE:

Related News Press

News and information

New method in the fight against forever chemicals September 13th, 2024

Energy transmission in quantum field theory requires information September 13th, 2024

Breakthrough in proton barrier films using pore-free graphene oxide: Kumamoto University researchers achieve new milestone in advanced coating technologies September 13th, 2024

Quantum researchers cause controlled ‘wobble’ in the nucleus of a single atom September 13th, 2024

Magnetism/Magnons

Simulating magnetization in a Heisenberg quantum spin chain April 5th, 2024

Three-pronged approach discerns qualities of quantum spin liquids November 17th, 2023

Study on Magnetic Force Microscopy wins 2023 Advances in Magnetism Award: Analysis of finite size effects reveals significant consequences for density measurements November 3rd, 2023

Twisted science: NIST researchers find a new quantum ruler to explore exotic matter October 6th, 2023

Possible Futures

Rice research could make weird AI images a thing of the past: New diffusion model approach solves the aspect ratio problem September 13th, 2024

Giving batteries a longer life with the Advanced Photon Source: New research uncovers a hydrogen-centered mechanism that triggers degradation in the lithium-ion batteries that power electric vehicles September 13th, 2024

NYU Abu Dhabi researchers develop novel covalent organic frameworks for precise cancer treatment delivery: NYU Abu Dhabi researchers develop novel covalent organic frameworks for precise cancer treatment delivery September 13th, 2024

New discovery aims to improve the design of microelectronic devices September 13th, 2024

Chip Technology

New discovery aims to improve the design of microelectronic devices September 13th, 2024

Groundbreaking precision in single-molecule optoelectronics August 16th, 2024

Enhancing electron transfer for highly efficient upconversion: OLEDs Researchers elucidate the mechanisms of electron transfer in upconversion organic light-emitting diodes, resulting in improved efficiency August 16th, 2024

Physicists unlock the secret of elusive quantum negative entanglement entropy using simple classical hardware August 16th, 2024

Discoveries

Energy transmission in quantum field theory requires information September 13th, 2024

Breakthrough in proton barrier films using pore-free graphene oxide: Kumamoto University researchers achieve new milestone in advanced coating technologies September 13th, 2024

Quantum researchers cause controlled ‘wobble’ in the nucleus of a single atom September 13th, 2024

New nanomaterial could transform how we visualise fingerprints: Innovative nanomaterials have the potential to revolutionise forensic science, particularly in the detection of latent (non-visible) fingermarks September 13th, 2024

Announcements

Giving batteries a longer life with the Advanced Photon Source: New research uncovers a hydrogen-centered mechanism that triggers degradation in the lithium-ion batteries that power electric vehicles September 13th, 2024

NYU Abu Dhabi researchers develop novel covalent organic frameworks for precise cancer treatment delivery: NYU Abu Dhabi researchers develop novel covalent organic frameworks for precise cancer treatment delivery September 13th, 2024

New discovery aims to improve the design of microelectronic devices September 13th, 2024

New method in the fight against forever chemicals September 13th, 2024

Interviews/Book Reviews/Essays/Reports/Podcasts/Journals/White papers/Posters

Rice research could make weird AI images a thing of the past: New diffusion model approach solves the aspect ratio problem September 13th, 2024

Breakthrough in proton barrier films using pore-free graphene oxide: Kumamoto University researchers achieve new milestone in advanced coating technologies September 13th, 2024

Quantum researchers cause controlled ‘wobble’ in the nucleus of a single atom September 13th, 2024

New nanomaterial could transform how we visualise fingerprints: Innovative nanomaterials have the potential to revolutionise forensic science, particularly in the detection of latent (non-visible) fingermarks September 13th, 2024

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project