Hamiltonian encoding reveals that X, CNOT, and SWAP gates are formed by many interfering Dyson-series pathways, and distinct optimal controls for the same gate exhibit distinct pathway mechanisms.
Additionally, for CNOT(ii) a final time ofT= 1 is used, consistent with the controls having higher fluence than CNOT(i)
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Mechanism behind creating qubit gates expressed as interfering quantum pathway amplitudes
Hamiltonian encoding reveals that X, CNOT, and SWAP gates are formed by many interfering Dyson-series pathways, and distinct optimal controls for the same gate exhibit distinct pathway mechanisms.