In a recent breakthrough, researchers from Japan discovered a unique Hall effect resulting from deflection of electrons due to “in-plane magnetization” of ferromagnetic oxide films (SrRuO₃). Arising ...
Using the circular vibration of surface acoustic waves, a collaborative research group have successfully controlled the magnetization of a ferromagnetic thin film. Using the circular vibration of ...
A research team has revealed the microscopic origin of the large magnetoelectric effect in interfacial multiferroics composed of the ferromagnetic Co2FeSi Heusler alloy and the piezoelectric material.
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New type of magnetism promises 1000x faster electronics
Nanoscale detection and manipulation of magnetic order is at the forefront of condensed-matter physics and technological ...
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Dual substitution induces room-temperature ferromagnetism and negative thermal expansion in BiFeO₃
Using a dual-cation substitution approach, researchers at Science Tokyo introduced ferromagnetism into bismuth ferrite, a ...
Researchers demonstrate a new strategy for magnetization reversal in multiferroic materials, opening pathways to more energy-efficient electronics. (Nanowerk News) As the digital world demands greater ...
Magnetic materials are typically divided into ferromagnetic and antiferromagnetic types, depending on their magnetic moments (electron spins), resulting in either macroscopic (net) magnetism or not.
A novel magnetic material with an extraordinary electronic structure might allow for the production of smaller and more efficient computer chips in the future: the p-wave magnet. Researchers from ...
Electron spin--a fundamentally quantum property--is central to spintronics, a technology that revolutionized data storage,[1] and that could play a major role in creating new computer processors. In ...
A research team led by Assistant Professor Kei Shigematsu and Specially Appointed Associate Professor Hena Das, along with graduate student Takuma Itoh and Professor Masaki Azuma from the Institute of ...
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