A benchmarking framework decomposes shuttling protocols into primitives whose heating contributions combine algebraically to predict total excitations in ion-trap quantum processors, shown on an 8-qubit linear-transport design.
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Vertical ion shuttling protocols in multi-rail traps can limit motional excitation to under 8 quanta in 500 μs by protocol choice, with surface heating dominant only at longer durations.
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A framework for the benchmarking of transport-induced excitations in shuttling-based ion-trap quantum processors
A benchmarking framework decomposes shuttling protocols into primitives whose heating contributions combine algebraically to predict total excitations in ion-trap quantum processors, shown on an 8-qubit linear-transport design.
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Low-Excitation Vertical Ion Shuttling in Scalable Multi-Rail Ion Trap Architectures
Vertical ion shuttling protocols in multi-rail traps can limit motional excitation to under 8 quanta in 500 μs by protocol choice, with surface heating dominant only at longer durations.