Circularly polarized light induces an octupolar inverse Faraday effect and anisotropic multipolar exchange in 4d2/5d2 Mott insulators, opening a nonequilibrium phase space with tunable antiferro-octupolar, ferro-octupolar, and multipolar liquid states.
2025 Quantum printing.arXiv preprint arXiv:2509.16792
3 Pith papers cite this work. Polarity classification is still indexing.
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Laguerre-Gaussian beams imprint topological magnetic textures via optical magnetic field structure, shown through micromagnetic simulations.
Proposes investigating many-body quantum effects in quantum turbulence using low-dimensional boson systems near the superfluid-insulator transition.
citing papers explorer
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Light-driven octupolar inverse Faraday effect and multipolar order in Mott insulators
Circularly polarized light induces an octupolar inverse Faraday effect and anisotropic multipolar exchange in 4d2/5d2 Mott insulators, opening a nonequilibrium phase space with tunable antiferro-octupolar, ferro-octupolar, and multipolar liquid states.
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Quantum Printing: Laguerre-Gaussian Beam Induced Topological Magnetic Textures
Laguerre-Gaussian beams imprint topological magnetic textures via optical magnetic field structure, shown through micromagnetic simulations.
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Quantum turbulence in the many-body regime
Proposes investigating many-body quantum effects in quantum turbulence using low-dimensional boson systems near the superfluid-insulator transition.