Symmetry matching between altermagnets and unconventional superconductors generates bulk zero-energy flat bands as Bogoliubov Fermi surfaces and distinct curved or flat surface states detectable by tunneling.
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Rashba spin-orbit coupling is presented as essential for engineering topological superconductors with Majorana zero modes that could support protected qubits.
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Engineering subgap states in superconductors by the symmetry of altermagnetism
Symmetry matching between altermagnets and unconventional superconductors generates bulk zero-energy flat bands as Bogoliubov Fermi surfaces and distinct curved or flat surface states detectable by tunneling.
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Rashba spin-orbit coupling and artificially engineered topological superconductors
Rashba spin-orbit coupling is presented as essential for engineering topological superconductors with Majorana zero modes that could support protected qubits.