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#quantumspin — Public Fediverse posts

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

  1. Elusive Quantum Material Turns Out to Be Something Even Stranger

    For decades, scientists have been searching for quantum spin liquids (QSLs) – materials thought to possess several special…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Physics #QSLs #Quantumcomputers #quantumspin #quantumspinliquid #RiceUniversity #Science #specialproperties
    newsbeep.com/us/633902/

  2. “This Discovery Changes How We Think About the Quantum World”: Physicists Reveal New Evidence of Quantum Particles Working Together

    Researchers from the Vienna University of Technology (TU Wien ) and the Okinawa Institute of Science and Tec…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Physics #OIST #OkinawaInstituteofScienceandTechnology #quantumspin #Science #self-sustainingsuperradiance #superradiance #TUWien #ViennaUniversityofTechnology
    newsbeep.com/us/392003/

  3. “This Discovery Changes How We Think About the Quantum World”: Physicists Reveal New Evidence of Quantum Particles Working Together

    Researchers from the Vienna University of Technology (TU Wien ) and the Okinawa Institute of Science and Tec…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Physics #OIST #OkinawaInstituteofScienceandTechnology #quantumspin #Science #self-sustainingsuperradiance #superradiance #TUWien #ViennaUniversityofTechnology
    newsbeep.com/us/392003/

  4. “This Discovery Changes How We Think About the Quantum World”: Physicists Reveal New Evidence of Quantum Particles Working Together

    Researchers from the Vienna University of Technology (TU Wien ) and the Okinawa Institute of Science and Technology (OIST) have…
    #NewsBeep #News #Physics #OIST #OkinawaInstituteofScienceandTechnology #quantumspin #Science #self-sustainingsuperradiance #superradiance #TUWien #UK #UnitedKingdom #ViennaUniversityofTechnology
    newsbeep.com/uk/355830/

  5. nature.com/articles/s41586-024

    (so I've been hunting for an information carrier…)

    …a family of exactly solvable #quantumspin models in one and two dimensions, in which free #paraparticles emerge as quasiparticle excitations, and their exchange statistics can be physically observed and are notably distinct from fermions and bosons…the possibility of a new type of #quasiparticle in #condensedmatter systems and—more speculatively—the potential for previously unconsidered types of #elementaryparticle.

  6. nature.com/articles/s41586-024

    (so I've been hunting for an information carrier…)

    …a family of exactly solvable #quantumspin models in one and two dimensions, in which free #paraparticles emerge as quasiparticle excitations, and their exchange statistics can be physically observed and are notably distinct from fermions and bosons…the possibility of a new type of #quasiparticle in #condensedmatter systems and—more speculatively—the potential for previously unconsidered types of #elementaryparticle.

  7. nature.com/articles/s41586-024

    (so I've been hunting for an information carrier…)

    …a family of exactly solvable #quantumspin models in one and two dimensions, in which free #paraparticles emerge as quasiparticle excitations, and their exchange statistics can be physically observed and are notably distinct from fermions and bosons…the possibility of a new type of #quasiparticle in #condensedmatter systems and—more speculatively—the potential for previously unconsidered types of #elementaryparticle.

  8. nature.com/articles/s41586-024

    (so I've been hunting for an information carrier…)

    …a family of exactly solvable #quantumspin models in one and two dimensions, in which free #paraparticles emerge as quasiparticle excitations, and their exchange statistics can be physically observed and are notably distinct from fermions and bosons…the possibility of a new type of #quasiparticle in #condensedmatter systems and—more speculatively—the potential for previously unconsidered types of #elementaryparticle.

  9. nature.com/articles/s41586-024

    (so I've been hunting for an information carrier…)

    …a family of exactly solvable #quantumspin models in one and two dimensions, in which free #paraparticles emerge as quasiparticle excitations, and their exchange statistics can be physically observed and are notably distinct from fermions and bosons…the possibility of a new type of #quasiparticle in #condensedmatter systems and—more speculatively—the potential for previously unconsidered types of #elementaryparticle.

  10. The Stern-Gerlach Experiment Misunderstood - Two guys — Stern and Gerlach — did an experiment in 1922. They wanted to measure m... - hackaday.com/2024/12/13/the-st #quantumspin #electrons #science #physics

  11. The Stern-Gerlach Experiment Misunderstood - Two guys — Stern and Gerlach — did an experiment in 1922. They wanted to measure m... - hackaday.com/2024/12/13/the-st #quantumspin #electrons #science #physics

  12. The Stern-Gerlach Experiment Misunderstood - Two guys — Stern and Gerlach — did an experiment in 1922. They wanted to measure m... - hackaday.com/2024/12/13/the-st #quantumspin #electrons #science #physics

  13. The Stern-Gerlach Experiment Misunderstood - Two guys — Stern and Gerlach — did an experiment in 1922. They wanted to measure m... - hackaday.com/2024/12/13/the-st #quantumspin #electrons #science #physics

  14. The Stern-Gerlach Experiment Misunderstood - Two guys — Stern and Gerlach — did an experiment in 1922. They wanted to measure m... - hackaday.com/2024/12/13/the-st #quantumspin #electrons #science #physics

  15. eurekalert.org/news-releases/9

    "We showed that a magnetic quasicrystal lattice can host states that go beyond the zero and one bit states of classical information technology,” Lopez-Bezanilla said. “By applying a magnetic field to a finite set of spins, we can morph the magnetic landscape of a quasicrystal object"

    #magnetism #qubit #quantumComputing #quasicrystal #informationTechnology #magneticField #spin #quantumSpin #spinStates #morphing

  16. eurekalert.org/news-releases/9

    "We showed that a magnetic quasicrystal lattice can host states that go beyond the zero and one bit states of classical information technology,” Lopez-Bezanilla said. “By applying a magnetic field to a finite set of spins, we can morph the magnetic landscape of a quasicrystal object"

    #magnetism #qubit #quantumComputing #quasicrystal #informationTechnology #magneticField #spin #quantumSpin #spinStates #morphing

  17. eurekalert.org/news-releases/9

    "We showed that a magnetic quasicrystal lattice can host states that go beyond the zero and one bit states of classical information technology,” Lopez-Bezanilla said. “By applying a magnetic field to a finite set of spins, we can morph the magnetic landscape of a quasicrystal object"

    #magnetism #qubit #quantumComputing #quasicrystal #informationTechnology #magneticField #spin #quantumSpin #spinStates #morphing

  18. eurekalert.org/news-releases/9

    "We showed that a magnetic quasicrystal lattice can host states that go beyond the zero and one bit states of classical information technology,” Lopez-Bezanilla said. “By applying a magnetic field to a finite set of spins, we can morph the magnetic landscape of a quasicrystal object"

    #magnetism #qubit #quantumComputing #quasicrystal #informationTechnology #magneticField #spin #quantumSpin #spinStates #morphing