Connect with us

Hi, what are you looking for?

Science

European Scientists Achieve Electrical Control of Spin Currents in Graphene

A collaborative research team from the Slovak Academy of Sciences has successfully developed a groundbreaking method to control spin currents in graphene using ferroelectric switching. This innovative approach involves coupling graphene with a monolayer of In2Se3 (Indium Selenide), enabling precise manipulation of spin currents via electrical signals.

The findings, published on November 14, 2025, in the journal Materials Futures, indicate that switching the ferroelectric polarization of In2Se3 can reverse the direction of spin currents in graphene. This advancement marks a significant step toward creating energy-efficient, non-volatile, and magnet-free spintronic devices, which could lead to the development of next-generation spin-based logic and memory systems.

Understanding Spintronics and the Role of Graphene

Spintronics has emerged as a pioneering field in nanoelectronics over the past two decades. It seeks to utilize the intrinsic angular momentum, or spin, of electrons for information processing, presenting advantages over conventional charge-based electronics. Spin-based logic and memory systems promise substantial reductions in power consumption and heat generation, alongside faster operational speeds and non-volatile data retention.

Despite significant advancements in materials and device architecture, a central challenge remains: achieving efficient electrical control of spin currents without relying on external magnetic fields. Traditional magnetic manipulation methods can hinder device scalability and efficiency, prompting researchers to explore alternative solutions, particularly within the realm of two-dimensional (2D) materials.

Graphene, known for its exceptional electronic mobility and long spin-relaxation time, presents a prime opportunity for spintronics. Nevertheless, its weak intrinsic spin-orbit coupling limits direct control over spins. To address this limitation, researchers have begun utilizing van der Waals heterostructures—layering graphene with other 2D materials to introduce new functionalities through proximity effects.

Innovative Heterostructures and Key Findings

In this study, the research team introduced a novel heterostructure by coupling graphene with ferroelectric materials. These materials possess spontaneous electric polarization that can be regulated with an applied voltage. When In2Se3 interfaces with graphene, its electric dipole can disrupt inversion symmetry, allowing for potential spin orientation and pure electric switching.

The researchers examined graphene/In2Se3 heterostructures in two configurations: a perfectly aligned (0°) interface and a twisted geometry (17.5°). Their calculations revealed that reversing the ferroelectric polarization of In2Se3 effectively switches the chirality of spin currents in graphene. At a zero-degree twist, the system exhibited a conventional Rashba-Edelstein effect, where an applied charge current produces a transverse spin accumulation aligned with the ferroelectric polarization. Conversely, at a 17.5° twist, the system transitioned to an unconventional Rashba-Edelstein effect, resulting in a near-collinear alignment of spin current with charge flow, driven by the emergence of a radial Rashba field.

This research lays the groundwork for the potential realization of graphene-based spin transistors controlled by ferroelectric switching. The implications are significant, as this technology could lead to low-energy, high-speed spin logic and memory devices.

The study highlights the benefits of integrating two-dimensional ferroelectric materials with graphene to unlock novel spintronic functionalities. Future efforts will focus on experimental validation of these results to further advance the development of electrically controlled, non-volatile spintronic devices that promise enhanced performance and efficiency.

You May Also Like

Sports

Fans of English football were treated to a compelling analysis of crucial refereeing decisions during two marquee matches on October 21, 2023. In a...

Sports

Mason Cox, a beloved figure at the Collingwood Football Club, has announced he will not be offered a new contract for the upcoming season....

Top Stories

UPDATE: The mother of allegedly murdered teen Pheobe Bishop has reached out with a poignant letter to the family of Gus, a four-year-old who...

Entertainment

During the recent auctions for The Block, two teams faced disappointment as they walked away without any sales, raising questions about the future of...

Lifestyle

Queensland is preparing for severe thunderstorms and a heatwave today, with the Bureau of Meteorology (BOM) forecasting strong winds and large hailstones across significant...

Entertainment

The much-anticipated auction day for contestants of The Block has arrived, culminating a season filled with hard work and emotional highs and lows. This...

Entertainment

Lady Annabel Goldsmith, a prominent British socialite and philanthropist, has died at the age of 91. Her passing leaves behind a legacy marked by...

Politics

Recent allegations have surfaced regarding a toxic work culture at Westpac Rescue, a prominent emergency service organization in Australia. Reports indicate that staff members...

Business

A new dining option is on the horizon for residents of Garden City, as the Brazilian steakhouse, Naar Steakhouse, prepares to open its doors...

Top Stories

URGENT UPDATE: Police are currently responding to a significant incident at Rockhampton Airport, resulting in the immediate evacuation of the terminal and the cancellation...

Entertainment

Clint Stanaway, a well-known presenter, has announced his departure from Channel 9 after nearly 25 years with the network. The 42-year-old sports and news...

Top Stories

URGENT UPDATE: New research from Hanoi Medical University Hospital reveals a shocking link between childhood obesity and reduced penis size in adulthood. The study,...

Copyright © All rights reserved. This website provides general news and educational content for informational purposes only. While we strive for accuracy, we do not guarantee the completeness or reliability of the information presented. The content should not be considered professional advice of any kind. Readers are encouraged to verify facts and consult appropriate experts when needed. We are not responsible for any loss or inconvenience resulting from the use of information on this site.