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Showing 1–6 of 6 results
Advanced filters: Author: V. V. Zavjalov Clear advanced filters
  • The order parameter describing the spontaneous symmetry breaking which occurs when a system becomes a superfluid is analogous to the Higgs field in particle physics from which the Higgs boson arises. Here, the authors demonstrate the existence of a light Higgs boson in the B-phase of superfluid3He.

    • V. V. Zavjalov
    • S. Autti
    • G. E. Volovik
    ResearchOpen Access
    Nature Communications
    Volume: 7, P: 1-6
  • Continuous time crystals are phases of matter that spontaneously break continuous time-translation symmetry and have been realised in non-equilibrium systems. Here the authors couple a continuous time crystal formed by magnon Bose-Einstein condensate in superfluid 3He to an oscillator and show that the coupled system obeys the optomechanical Hamiltonian.

    • J. T. Mäkinen
    • P. J. Heikkinen
    • V. B. Eltsov
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-10
  • Quantum turbulence typically entails reconnecting quantized vortices as seen in quantum fluids. Experiments with superfluid helium now show turbulent dynamics with negligible vortex reconnection, a regime dominated by interacting vortex waves at all length scales.

    • J. T. Mäkinen
    • S. Autti
    • V. B. Eltsov
    ResearchOpen Access
    Nature Physics
    Volume: 19, P: 898-903
  • Two adjacent quantum time crystals implemented by two magnon condensates in the superfluid B-phase of helium-3 are observed to coherently exchange magnons as a manifestation of the AC Josephson effect, offering insights on the dynamics and interactions between these phases of matter.

    • S. Autti
    • P. J. Heikkinen
    • V. B. Eltsov
    Research
    Nature Materials
    Volume: 20, P: 171-174