Theoretical calculations for S/F/S Josephson junctions with GdIr2Si2 thin films predict an anomalous phase shift of order unity and a magnetization-tunable Josephson diode effect with efficiency up to 0.3.
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Mean-field Hubbard calculations on mirror-symmetric magic-angle twisted trilayer graphene predict antiferromagnetic order at neutrality with reduced critical U and non-trivial multiband Berry curvature despite zero Chern numbers.
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Anomalous phase shift and superconducting diode effect in Josephson junctions via thin films of rare-earth intermetallic magnets
Theoretical calculations for S/F/S Josephson junctions with GdIr2Si2 thin films predict an anomalous phase shift of order unity and a magnetization-tunable Josephson diode effect with efficiency up to 0.3.
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Magnetism and hidden quantum geometry in charge neutral twisted trilayer graphene
Mean-field Hubbard calculations on mirror-symmetric magic-angle twisted trilayer graphene predict antiferromagnetic order at neutrality with reduced critical U and non-trivial multiband Berry curvature despite zero Chern numbers.