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9 avril 2025 C'est dans la matière condensée, et non dans les collisionneurs, que la supersymétrie apparaît
Des expériences de diffusion neutronique à l'ILL et ISIS mettent en évidence un comportement supersymétrique dans un matériau quantique. Cela prouve qu'il apparaît naturellement dans la matière condensée et ouvre des perspectives pour créer des qubits stables pour l'informatique quantique. L'étude, menée par des chercheurs du PSI, est publiée dans Nature Communications.
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17 mars 2022 Frustrated antiferromagnets in a whorl
Tiny vortices in magnetic materials called skyrmions act like quantum particles. If able to be stabilised and then manipulated, they could lead the next-generation of electronic devices that exploit magnetic spin to transfer and store information. A new type of skyrmion discovered in an antiferromagnetic compound could wind up progress in the right direction.The study of complex magnetic behaviou…
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6 octobre 2020 Machine Learning: First autonomous steps of the neutron spectrometer ThALES
During the second reactor cycle in 2020, the ThALES team and SCI/CS at ILL in Grenoble, France commissioned and tested a self-learning algorithm developed by the CAMERA team at Lawrence Berkeley National Laboratory (Berkeley Lab). For the first time, an algorithm took control over the measurement process, without human intervention. Completely agnostic (that is, without any prior information on t…
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11 avril 2018 Unveiling the electrical and magnetic properties of lanthanum nickelates
The rare earth nickelates RNiO3 with the high Ni3+ oxidation state have continued to attract enormous interest due to the famous metal-insulator transition and unusual charge and spin-order phenomena. The prediction for multiferroicity and even superconductivity in thin film hetero-structures have triggered new intensive research efforts. However, our theoretical understanding remains limited. Lo…