Search results for: STRIPE ORDER - Bridge of Knowledge

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Search results for: STRIPE ORDER

Search results for: STRIPE ORDER

  • Stripe order and magnetic anisotropy in the S=1 antiferromagnet BaMoP2O8

    Publication
    • J. Hembacher
    • D. Badrtdinov
    • L. Ding
    • Z. Ryżyńska
    • C. Ritter
    • V. Mazurenko
    • A. Tsirlin

    - PHYSICAL REVIEW B - Year 2018

    Magnetic behavior of yavapaiite-type BaMoP2O8 with the spatially anisotropic triangular arrangement of the S=1Mo4+ ions is explored using thermodynamic measurements, neutron diffraction, and density-functional band-structure calculations. A broad maximum in the magnetic susceptibility around 46 K is followed by the stripe antiferromagnetic order with the propagation vector k=(12,12,12) formed below TN≃21 K. This stripe phase is...

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  • Self-assembled concentric stripes of diamond particles by a pinning-depinning mechanism

    Publication

    - DIAMOND AND RELATED MATERIALS - Year 2024

    We describe the novel mechanism of spontaneous formation of the concentric stripe patterns of microdiamonds via gradual solvent evaporation from a suspension confined in a teardrop well. The self-organized patterns exhibit a series of arcs with regular spacings varying between hundreds of micrometers and millimeters. They result from an interplay between the directional forced circulation of the solvent and a stick-slip movement...

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  • Biomechanical causes for failure of the Physiomesh/Securestrap system

    Publication

    - Scientific Reports - Year 2023

    This study investigates the mechanical behavior of the Physiomesh/Securestrap system, a hernia repair system used for IPOM procedures associated with high failure rates. The study involved conducting mechanical experiments and numerical simulations to investigate the mechanical behavior of the Physiomesh/Securestrap system under pressure load. Uniaxial tension tests were conducted to determine the elasticity modulus of the Physiomesh...

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  • Spin and Orbital Effects on Asymmetric Exchange Interaction in Polar Magnets: M(IO3)2 (M = Cu and Mn)

    Publication

    - INORGANIC CHEMISTRY - Year 2021

    Magnetic polar materials feature an astonishing range of physical properties, such as magnetoelectric coupling, chiral spin textures, and related new spin topology physics. This is primarily attributable to their lack of space inversion symmetry in conjunction with unpaired electrons, potentially facilitating an asymmetric Dzyaloshinskii–Moriya (DM) exchange interaction supported by spin–orbital and electron–lattice coupling. However,...

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