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12 Current news about the topic magnetic materialsrss
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Special heat treatment improves novel magnetic material
Skyrmions – tiny magnetic vortices – are considered promising candidates for tomorrow’s information memory devices which may be able to achieve enormous data storage and processing capacities. A research team led by the Helmholtz-Zentrum Dresden-Rossendorf (HZDR) has developed a method to grow a ...
Researchers demonstrate new high-throughput method for discovering magnetic topology
The electronic structure of nonmagnetic crystals can be classified by complete theories of band topology, reminiscent of a “topological periodic table.” However, such a classification for magnetic materials has so far been elusive, and hence very few magnetic topological materials have been ...
Researchers conduct experiments to demonstrate inertial motion in magnetic materials: Groundwork for ultra-fast data storage
In the journal Nature Physics, an international team of scientists from Germany, Italy, Sweden, and France report on their experimental observation of an inertial effect of electron spins in magnetic materials, which had previously been predicted, but difficult to demonstrate. The results are the ...
For the first time, researchers have managed to create and identify antiferromagnetic skyrmions with a unique property
Nanoscale vortices known as skyrmions can be created in many magnetic materials. For the first time, researchers at PSI have managed to create and identify antiferromagnetic skyrmions with a unique property: critical elements inside them are arranged in opposing directions. Scientists have ...
Study paves the way for new design strategy for novel multinuclear single-molecule magnets
A Canadian-Finnish collaboration has led to the discovery of a novel magnetic compound in which two magnetic dysprosium metal ions are bridged by two aromatic organic radicals forming a pancake bond. The results of this study can be utilized to improve the magnetic properties of similar ...
A complex process can modify non-magnetic oxide materials in such a way to make them magnetic. The basis for this new phenomenon is controlled layer-by-layer growth of each material. An international research team with researchers from Martin Luther University Halle-Wittenberg (MLU) reported on ...
Quantum entanglement in graphene nanostructures
Graphene triangles with an edge length of only a few atoms behave like peculiar quantum magnets. When two of these nano-triangles are joined, a "quantum entanglement" of their magnetic moments takes place: the structure becomes antiferromagnetic. This could be a breakthrough for future magnetic ...
The ultra-fast change of light helicity is particularly interesting to observe processes in magnetic materials
At the BESSY II storage ring, a joint team of accelerator physicists, undulator experts and experimenters has shown how the helicity of circularly polarized synchrotron radiation can be switched faster - up to a million times faster than before. They used an elliptical double-undulator developed ...
Smaller, faster, more energy-efficient – this is the goal that developers of electronic devices have been working towards for years. In order to be able to miniaturize individual components of mobile phones or computers for example, magnetic waves are currently regarded as promising alternatives ...
Swiss start-up Qnami closes 2.6M CHF seed round
Qnami announced the closing of a CHF 2.6M (USD 2.6M) seed round led by Venture Capital fund Quantonation and further supported by investiere, ZKB Start-up Finance and the High-Tech Gründerfonds. The funds will support the market entry of Qnami’s first product, a quantum microscope for inspection ...