For nearly adiabatic two-level systems, a drive whose frequency tracks the instantaneous energy gap, with an analytically derived amplitude, reproduces optimal control and suppresses transitions to the target state.
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Optimal Control in Nearly-Adiabatic Two-Level Quantum Systems via Time-Dependent Resonance
For nearly adiabatic two-level systems, a drive whose frequency tracks the instantaneous energy gap, with an analytically derived amplitude, reproduces optimal control and suppresses transitions to the target state.