Altermagnets provide all-electrical, dephasing-protected spin qubits in quantum dots with tunable frequencies via dot ellipticity and support for fSim gates plus singlet-triplet operation.
All-electrically controlled spintronics in altermag- netic heterostructures
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
fields
cond-mat.mes-hall 2verdicts
UNVERDICTED 2representative citing papers
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%.
citing papers explorer
-
All-electrical dephasing-protected spin qubits in altermagnets
Altermagnets provide all-electrical, dephasing-protected spin qubits in quantum dots with tunable frequencies via dot ellipticity and support for fSim gates plus singlet-triplet operation.
-
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%.