Coupling 3D topological insulators to d-wave altermagnets produces hybrid and higher-order topological phases with tunable hinge modes that enable current switching.
Josephson current signature of Floquet Majorana and topological accidental zero modes in altermagnet heterostructures,
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A 1D model with unconventional magnetism plus Rashba and Ising SOC supports topological superconductivity with four Majorana end modes in both BCS and FFLO channels and yields a field-free SDE with diode efficiency around 65%.
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Current switching behavior mediated via hinge modes in higher-order topological phases using altermagnets
Coupling 3D topological insulators to d-wave altermagnets produces hybrid and higher-order topological phases with tunable hinge modes that enable current switching.
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Topological superconductivity and superconducting diode effect mediated via unconventional magnet and Ising spin-orbit coupling
A 1D model with unconventional magnetism plus Rashba and Ising SOC supports topological superconductivity with four Majorana end modes in both BCS and FFLO channels and yields a field-free SDE with diode efficiency around 65%.