activity
20112024
most citedAccelerated Randomized Benchmarking

49 citations · 49 across the 3 of their papers we have counts for

collaborators

6 papers

quant-ph2024

Thermal state structure in the Tavis--Cummings model and rapid simulations in mesoscopic quantum ensembles

Lane G. Gunderman, Troy Borneman, David G. Cory

Hybrid quantum systems consisting of a collection of N spin-1/2 particles uniformly interacting with an electromagnetic field, such as one confined in a cavity, are important for t…

quant-ph2014

Quantum Model Of Spin Noise

R. Annabestani, D. G. Cory, J. Emerson

Any ensemble of quantum particles exhibits statistical fluctuations known as spin noise. Here, we provide a description of spin noise in the language of open quantum systems. The d…

quant-ph2014★ 49 cited

Accelerated Randomized Benchmarking

Christopher Granade, Christopher Ferrie, D. G. Cory

Quantum information processing offers promising advances for a wide range of fields and applications, provided that we can efficiently assess the performance of the control applied…

quant-ph2013

Tractable Simulation of Error Correction with Honest Approximations to Realistic Fault Models

Daniel Puzzuoli, Christopher Granade, Holger Haas +3

In previous work, we proposed a method for leveraging efficient classical simulation algorithms to aid in the analysis of large-scale fault tolerant circuits implemented on hypothe…

quant-ph2011

Adaptive Hamiltonian Estimation Using Bayesian Experimental Design

Christopher Ferrie, Christopher E. Granade, D. G. Cory

Using Bayesian experimental design techniques, we have shown that for a single two-level quantum mechanical system under strong (projective) measurement, the dynamical parameters o…

quant-ph2011

Parallel Information Transfer in a Multi-Node Quantum Information Processor

Troy W. Borneman, Christopher E. Granade, David G. Cory

We describe a method for coupling disjoint quantum bits (qubits) in different local processing nodes of a distributed node quantum information processor. An effective channel for i…