Discovery of a non-adiabatic resonance window at ~4.9 that yields a 9.2-fold gate speed-up on 127-qubit IBM processors with high fidelity.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
fields
cond-mat.mes-hall 3years
2026 3verdicts
UNVERDICTED 3representative citing papers
Nonlinear detuning stabilizes non-adiabatic magnonic dynamics in YIG:Co nanostructures, enabling low-occupancy resonant states with estimated 22 aJ switching energy.
Nonlinear spectral detuning via a regulator U can saturate non-adiabatic parametric amplification, suppressing exponential growth toward bounded low-occupancy regimes in strongly nonlinear oscillatory systems.
citing papers explorer
-
Ultra-Fast Quantum Control via Non-Adiabatic Resonance Windows: A 9x Speed-up on 127-Qubit IBM Processors
Discovery of a non-adiabatic resonance window at ~4.9 that yields a 9.2-fold gate speed-up on 127-qubit IBM processors with high fidelity.
-
Nonlinear Stabilization of Non-Adiabatic Magnonic Dynamics
Nonlinear detuning stabilizes non-adiabatic magnonic dynamics in YIG:Co nanostructures, enabling low-occupancy resonant states with estimated 22 aJ switching energy.
-
An Effective Scaling Framework for Non-Adiabatic Mode Dynamics
Nonlinear spectral detuning via a regulator U can saturate non-adiabatic parametric amplification, suppressing exponential growth toward bounded low-occupancy regimes in strongly nonlinear oscillatory systems.