Close Menu
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
What's Hot

Large-aperture MEMS modulator paves way for high-speed, energy-efficient optical communication systems

May 11, 2025

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
Home»News»Team discusses the blueprint for ultrafast spintronics
News

Team discusses the blueprint for ultrafast spintronics

September 25, 2023No Comments2 Mins Read
Facebook Twitter Pinterest Telegram LinkedIn Tumblr WhatsApp Email
Team discusses the blueprint for ultrafast spintronics
Share
Facebook Twitter LinkedIn Pinterest Telegram Email
Prof. Wecan Jin (left) and his graduate student Chunli Tang (right) in the lab with the PPMS. Credit: Wencan Jin

Assistant Professor Wencan Jin and his team at Auburn University’s Department of Physics are pushing the boundaries of technology with their latest publication on spin dynamics in two-dimensional (2D) van der Waals magnetic systems. Published in Physics Reports, this seminal review work delves into the nitty-gritty of magnetic behaviors and their ultrafast dynamics in atomically thin materials, exploring its transformative potential for next-generation technology.

Since graphene burst onto the scene in 2004, the realm of 2D materials has been a hotbed of research. But the game-changer came in 2018 with the emergence of 2D van der Waals magnetic materials. These materials are more than just flat; they have unique magnetic properties that could redefine our technological capabilities.

“Our work presents an overview of the significant progress in probing spin dynamics of 2D magnetic materials. Moreover, we provide a roadmap for leveraging these 2D magnets in innovative applications, from ultrafast data storage solutions to revolutionary communication devices,” says Prof. Jin, who also serves as an Adjunct Assistant Professor in the Department of Electrical & Computer Engineering at Auburn University. His group carries out ferromagnetic resonance experiments to study spin dynamics using the Physical Property Measurement System (PPMS).

What sets this research apart is its in-depth focus on spin dynamics—the study of how electron spins behave in these new 2D magnetic landscapes. Mastering spin dynamics is key to unlocking groundbreaking technologies like spin tunnel field-effect transistors and spin-filtering devices. These technologies could pave the way for faster, more energy-efficient computing and data storage systems, revolutionizing everything from smartphones to quantum computing.

See also  Detecting lung cancer early with sugar-sensing nanotech

The study was a global effort, including contributions from Prof. Wei Zhang at the University of North Carolina, Prof. Chunhui Du at the University of California San Diego, and top-tier researchers from South Korea, Japan, and the UK. The team thus has experts in theory, spectroscopic characterization, device fabrication, and transport measurement. Together, they have compiled a treasure trove of insights that could serve as a blueprint for the technological landscape of tomorrow.

Provided by
Auburn University



Source link

blueprint discusses spintronics Team Ultrafast
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

Related Posts

Large-aperture MEMS modulator paves way for high-speed, energy-efficient optical communication systems

May 11, 2025

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025

AI-powered electronic nose detects diverse scents for health care and environmental applications

May 10, 2025

Microbubble dynamics in boiling water enable precision fluid manipulation

May 9, 2025

Unique molecule may lead to smaller, more efficient computers

May 9, 2025

Comments are closed.

Top Articles

Fundamental quantum model recreated from nanographenes

News

Scientists develop composite accelerometer for extreme environments

News

Creating 3D-printed materials that shrink more precisely

Editors Picks

Large-aperture MEMS modulator paves way for high-speed, energy-efficient optical communication systems

May 11, 2025

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025

AI-powered electronic nose detects diverse scents for health care and environmental applications

May 10, 2025
About Us
About Us

Your go-to source for the latest nanotechnology breakthroughs. Explore innovations, applications, and implications shaping the future at the molecular level. Stay informed, embrace the nano-revolution.

We're accepting new partnerships right now.

Facebook X (Twitter) Instagram Pinterest
Our Picks

Plasma-synthesized photothermal material could enable efficient solar-powered water purification

April 19, 2025

Engineering non-precious metal electrocatalysts for cost-effective and environmentally responsible water splitting

December 12, 2023

Light-based microcapillary monitoring sparks innovation in manufacturing and biotechnology

October 11, 2024

Subscribe to Updates

Get the latest creative Nano Tech news from Elnano.com

© 2025 Elnano.com - All rights reserved.
  • Contact
  • Privacy Policy
  • Terms & Conditions

Type above and press Enter to search. Press Esc to cancel.

Cleantalk Pixel