4 citations · 5 across the 2 of their papers we have counts for
8 papers · 1 filter
Characterizing mid-circuit measurements on a superconducting qubit using gate set tomography
Kenneth Rudinger, Guilhem J. Ribeill, Luke C. G. Govia +6
Measurements that occur within the internal layers of a quantum circuit -- mid-circuit measurements -- are an important quantum computing primitive, most notably for quantum error…
Efficient flexible characterization of quantum processors with nested error models
Erik Nielsen, Kenneth Rudinger, Timothy Proctor +2
We present a simple and powerful technique for finding a good error model for a quantum processor. The technique iteratively tests a nested sequence of models against data obtained…
Wildcard error: Quantifying unmodeled errors in quantum processors
Robin Blume-Kohout, Kenneth Rudinger, Erik Nielsen +2
Error models for quantum computing processors describe their deviation from ideal behavior and predict the consequences in applications. But those processors' experimental behavior…
Probing quantum processor performance with pyGSTi
Erik Nielsen, Kenneth Rudinger, Timothy Proctor +3
PyGSTi is a Python software package for assessing and characterizing the performance of quantum computing processors. It can be used as a standalone application, or as a library, t…
Detecting crosstalk errors in quantum information processors
Mohan Sarovar, Timothy Proctor, Kenneth Rudinger +3
Crosstalk occurs in most quantum computing systems with more than one qubit. It can cause a variety of correlated and nonlocal crosstalk errors that can be especially harmful to fa…
Detecting and tracking drift in quantum information processors
Timothy Proctor, Melissa Revelle, Erik Nielsen +5
If quantum information processors are to fulfill their potential, the diverse errors that affect them must be understood and suppressed. But errors typically fluctuate over time, a…