Electrically controlled flip-flop qubit pairs can implement sqrt(iSWAP) and iSWAP gates with optimized local Rz corrections, but multi-qubit layouts require co-design because spectator qubits shift the entangling landscape.
A single-atom electron spin qubit in silicon
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Numerical Optimization of Two-Qubit Gates in Silicon Flip-Flop Qubit Arrays under Electrical Control
Electrically controlled flip-flop qubit pairs can implement sqrt(iSWAP) and iSWAP gates with optimized local Rz corrections, but multi-qubit layouts require co-design because spectator qubits shift the entangling landscape.