Symmetry analysis and Furusaki-Tsukada calculations show that tuning exchange-field directions, Rashba SOC, and d-wave lobe orientations in Josephson junctions enhances nonreciprocity in the current-phase relation by more than 40%, with asymmetric Andreev bound states driving the diode effect.
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Exact diagonalization of a double quantum dot Josephson junction model reveals multiple tunable phase transitions and controllable non-local magnetization driven by on-site and inter-dot electron interactions.
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Quantum phase transition in a double quantum dot Josephson junction driven by electron-electron interactions
Exact diagonalization of a double quantum dot Josephson junction model reveals multiple tunable phase transitions and controllable non-local magnetization driven by on-site and inter-dot electron interactions.