Simulations identify specific frequency bands of phase noise in control signals as the main drivers of qubit fidelity loss, with an approximate analytical picture of their contributions.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
fields
quant-ph 2verdicts
UNVERDICTED 2representative citing papers
QPDE applied to 2- and 3-spin Heisenberg models on IBM processors yields 85-93% accuracy versus classical values after noise mitigation.
citing papers explorer
-
Impact of control signal phase noise on qubit fidelity
Simulations identify specific frequency bands of phase noise in control signals as the main drivers of qubit fidelity loss, with an approximate analytical picture of their contributions.
-
Applications of the Quantum Phase Difference Estimation Algorithm to the Excitation Energies in Spin Systems on a NISQ Device
QPDE applied to 2- and 3-spin Heisenberg models on IBM processors yields 85-93% accuracy versus classical values after noise mitigation.