DFT+DMFT reveals RuO2 sits near the paramagnetic-altermagnetic boundary and itinerant-localized crossover, making its magnetic state tunable by minimal strain due to dynamical correlations.
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Ultra-clean RuO2 crystals exhibit weakly correlated 3D Fermi-liquid behavior with susceptibility increasing with temperature due to lattice-expansion effects on the band structure.
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Correlation-driven tunability of altermagnetism in RuO$_2$
DFT+DMFT reveals RuO2 sits near the paramagnetic-altermagnetic boundary and itinerant-localized crossover, making its magnetic state tunable by minimal strain due to dynamical correlations.
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Fermi-liquid behavior and characteristic temperature-dependent susceptibility in clean RuO$_2$ crystal
Ultra-clean RuO2 crystals exhibit weakly correlated 3D Fermi-liquid behavior with susceptibility increasing with temperature due to lattice-expansion effects on the band structure.