activity
20122023
most citedNonnegative subtheories and quasiprobability representations of qubits

42 citations · 51 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2023

Stochastic errors in quantum instruments

Darian McLaren, Matthew A. Graydon, Joel J. Wallman

Fault-tolerant quantum computation requires non-destructive quantum measurements with classical feed-forward. Many experimental groups are actively working towards implementing suc…

quant-ph20231 cited

Randomized compiling for subsystem measurements

Stefanie J. Beale, Joel J. Wallman

Measurements are a vital part of any quantum computation, whether as a final step to retrieve results, as an intermediate step to inform subsequent operations, or as part of the co…

quant-ph20236 cited

The Error Reconstruction and Compiled Calibration of Quantum Computing Cycles

Arnaud Carignan-Dugas, Dar Dahlen, Ian Hincks +6

Quantum computers are inhibited by physical errors that occur during computation. For this reason, the development of increasingly sophisticated error characterization and error su…

quant-ph20142 cited

Nonlocality in instantaneous quantum circuits

Joel J. Wallman, Emily Adlam

We show that families of Instantaneous Quantum Polynomial (IQP) circuits corresponding to nontrivial Bell tests exhibit nonlocality. However, we also prove that this nonlocality ca…

quant-ph201242 cited

Nonnegative subtheories and quasiprobability representations of qubits

Joel J. Wallman, Stephen D. Bartlett

Negativity in a quasiprobability representation is typically interpreted as an indication of nonclassical behavior. However, this does not preclude states that are non-negative fro…