Conventional electronics process information leveraging the electrical charge of electrons. Over the past few decades, some ...
The element cobalt is considered a typical ferromagnet with no further secrets. However, an international team led by HZB researcher Dr. Jaime Sánchez-Barriga has now uncovered complex topological ...
Ottawa, Jan. 28, 2026 (GLOBE NEWSWIRE) -- The global spintronics market size is valued at USD 3.03 billion in 2026 and is expected to be worth USD 49.33 billion by 2035, with a robust CAGR of 36.48% ...
Using neutron scattering and voltage measurements, a group of researchers have discovered that a material's magnetic properties can predict spin current changes with temperature. The finding is a ...
Spintronics, also known as spin electronics, is a rapidly developing field that explores the potential of utilising the spin of electrons in solid-state devices. Spin is one of the three inherent ...
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The challenge of fabricating nanowires directly on silicon substrates for the creation of the next generation of electronics has finally been solved. Next generation spintronics will lead to better ...
Conventional electronic devices rely on the generation, transport, manipulation, and detection of electric charge carriers, such as electrons and holes. Spintronics employs the intrinsic angular ...
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.
In some materials, spins form complex magnetic structures within the nanometre and micrometre scale in which the magnetization direction twists and curls along specific directions. Examples of such ...
Scientists at the Norwegian University of Science and Technology believe they may have observed ...
The field of spintronics has, so far, focused on magnetic systems with uncompensated order, i.e. ferromagnets and ferrimagnets. Both these systems can be easily studied using conventional techniques, ...