A geometric formalism yields tight quantum speed limits for quantum gates by mapping unitary evolution to minimal-length curves with curvature bounds.
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quant-ph 3years
2026 3verdicts
UNVERDICTED 3representative citing papers
Optimized Gaussian pulses derived via Pontryagin's principle suppress leakage in multilevel STIRAP and improve transfer fidelity in transmon qubits.
A shooting technique yields smooth control pulses for quantum gates on spin qudits that are faster than GRAPE, with the advantage growing as system dimension increases, shown in numerical simulations inspired by single molecule magnets.
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How fast can a quantum gate be? Exact speed limits from geometry
A geometric formalism yields tight quantum speed limits for quantum gates by mapping unitary evolution to minimal-length curves with curvature bounds.
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Pontryagin's Principle for Leakage-Immune Adiabatic Quantum State Transfer
Optimized Gaussian pulses derived via Pontryagin's principle suppress leakage in multilevel STIRAP and improve transfer fidelity in transmon qubits.
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Implementation of a shooting technique for quantum optimal control on spin qudits
A shooting technique yields smooth control pulses for quantum gates on spin qudits that are faster than GRAPE, with the advantage growing as system dimension increases, shown in numerical simulations inspired by single molecule magnets.