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#spintronics — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #spintronics, aggregated by home.social.

  1. A novel microscopy technique that combines holographic imaging with ultrafast spectroscopy to observe the interaction of light and matter, specifically extremely short-lived electronic and magnetic phenomena.
    #PhysicalChemistry #Photonics #Nanotechnology #MaterialsScience #Optoelectronics #Spintronics #sflorg
    sflorg.com/2026/05/phy05282601

  2. A magnetic hopfion is a highly stable, three-dimensional magnetic structure in which electron spins exhibit all possible directions within a limited volume, forming closed and linked loops.
    #CondensedMatterPhysics #Spintronics #Topology #sflorg
    sflorg.com/2026/05/phy05222601

  3. A magnetic hopfion is a highly stable, three-dimensional magnetic structure in which electron spins exhibit all possible directions within a limited volume, forming closed and linked loops.
    #CondensedMatterPhysics #Spintronics #Topology #sflorg
    sflorg.com/2026/05/phy05222601

  4. A magnetic hopfion is a highly stable, three-dimensional magnetic structure in which electron spins exhibit all possible directions within a limited volume, forming closed and linked loops.
    #CondensedMatterPhysics #Spintronics #Topology #sflorg
    sflorg.com/2026/05/phy05222601

  5. A magnetic hopfion is a highly stable, three-dimensional magnetic structure in which electron spins exhibit all possible directions within a limited volume, forming closed and linked loops.
    #CondensedMatterPhysics #Spintronics #Topology #sflorg
    sflorg.com/2026/05/phy05222601

  6. A magnetic hopfion is a highly stable, three-dimensional magnetic structure in which electron spins exhibit all possible directions within a limited volume, forming closed and linked loops.
    #CondensedMatterPhysics #Spintronics #Topology #sflorg
    sflorg.com/2026/05/phy05222601

  7. europesays.com/uk/935271/ Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics #Physics #Science #Spintronics;Physics;QuantumPhysics;EngineeringAndConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology #UK #UnitedKingdom

  8. europesays.com/uk/932685/ Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics #Physics #Science #Spintronics;Physics;QuantumPhysics;EngineeringAndConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology #UK #UnitedKingdom

  9. Atomic Insights into Antiferromagnets: A New Imaging Frontier

    Scientists used a new imaging method to see atomic-scale magnetic structures in antiferromagnets, important for future fast electronic devices.

    #Antiferromagnetism, #Spintronics, #MaterialsScience, #ElectronMicroscopy, #Nanotechnology

    newsletter.tf/new-imaging-tech

  10. Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics

    Researchers at the University of Oxford have demonstrated a new kind of quantum interaction using a single trapped…
    #NewsBeep #News #Physics #CA #Canada #Science #Spintronics;Physics;QuantumPhysics;EngineeringandConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology
    newsbeep.com/ca/640840/

  11. Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics

    Researchers at the University of Oxford have demonstrated a new kind of quantum interaction using a single trapped…
    #NewsBeep #News #Physics #CA #Canada #Science #Spintronics;Physics;QuantumPhysics;EngineeringandConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology
    newsbeep.com/ca/640938/

  12. Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics

    Researchers at the University of Oxford have demonstrated a new kind of quantum interaction using a single trapped…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Physics #Science #Spintronics;Physics;QuantumPhysics;EngineeringandConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology
    newsbeep.com/us/617294/

  13. Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics

    Researchers at the University of Oxford have demonstrated a new kind of quantum interaction using a single trapped…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Physics #Science #Spintronics;Physics;QuantumPhysics;EngineeringandConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology
    newsbeep.com/us/617294/

  14. europesays.com/ie/463263/ Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics #Éire #IE #Ireland #Physics #Science #Spintronics;Physics;QuantumPhysics;EngineeringAndConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology

  15. europesays.com/ie/463218/ Oxford physicists achieve first-ever “quadsqueezing” breakthrough in quantum physics #Éire #IE #Ireland #Physics #Science #Spintronics;Physics;QuantumPhysics;EngineeringAndConstruction;SpintronicsResearch;NeuralInterfaces;ComputerScience;InformationTechnology

  16. europesays.com/uk/920173/ New “optical tornado” technology could transform quantum communication #Physics #Science #Spintronics;EngineeringAndConstruction;Optics;Nanotechnology;SpintronicsResearch;ComputerModeling;Mathematics;MathematicalModeling #UK #UnitedKingdom

  17. europesays.com/ie/453879/ New “optical tornado” technology could transform quantum communication #Éire #IE #Ireland #Science #Spintronics;EngineeringAndConstruction;Optics;Nanotechnology;SpintronicsResearch;ComputerModeling;Mathematics;MathematicalModeling

  18. europesays.com/dk/68486/ New “optical tornado” technology could transform quantum communication #Poland #Spintronics;EngineeringAndConstruction;Optics;Nanotechnology;SpintronicsResearch;ComputerModeling;Mathematics;MathematicalModeling #Warsaw

  19. New “optical tornado” technology could transform quantum communication

    Can light spin like a whirlwind? Researchers have now shown that it can. Scientists from the Faculty of…
    #Poland #Polska #PL #Europe #Europa #EU #Warsaw #Spintronics;EngineeringandConstruction;Optics;Nanotechnology;SpintronicsResearch;ComputerModeling;Mathematics;MathematicalModeling
    europesays.com/poland/3674/

  20. europesays.com/ie/453404/ New “optical tornado” technology could transform quantum communication #Éire #IE #Ireland #Science #Spintronics;EngineeringAndConstruction;Optics;Nanotechnology;SpintronicsResearch;ComputerModeling;Mathematics;MathematicalModeling

  21. Physicists assumed an attempt time of roughly one nanosecond for decades, recent experimental measurements reveal the actual attempt time is between 4 and 11 nanoseconds.
    #CondensedMatterPhysics #Physics #Spintronics #MaterialsScience #sflorg
    sflorg.com/2026/04/phy04222601

  22. Physicists assumed an attempt time of roughly one nanosecond for decades, recent experimental measurements reveal the actual attempt time is between 4 and 11 nanoseconds.
    #CondensedMatterPhysics #Physics #Spintronics #MaterialsScience #sflorg
    sflorg.com/2026/04/phy04222601

  23. Physicists assumed an attempt time of roughly one nanosecond for decades, recent experimental measurements reveal the actual attempt time is between 4 and 11 nanoseconds.
    #CondensedMatterPhysics #Physics #Spintronics #MaterialsScience #sflorg
    sflorg.com/2026/04/phy04222601

  24. Physicists assumed an attempt time of roughly one nanosecond for decades, recent experimental measurements reveal the actual attempt time is between 4 and 11 nanoseconds.
    #CondensedMatterPhysics #Physics #Spintronics #MaterialsScience #sflorg
    sflorg.com/2026/04/phy04222601

  25. Physicists assumed an attempt time of roughly one nanosecond for decades, recent experimental measurements reveal the actual attempt time is between 4 and 11 nanoseconds.
    #CondensedMatterPhysics #Physics #Spintronics #MaterialsScience #sflorg
    sflorg.com/2026/04/phy04222601

  26. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  27. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  28. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  29. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  30. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.