27 citations · 37 across the 3 of their papers we have counts for
7 papers · 1 filter
Programming the full stack of an open-access quantum computer
Virginia Frey, Richard Rademacher, Elijah Durso-Sabina +5
We present a new quantum programming language called "Quala" that enables true full-stack programming of quantum hardware. Quala allows seamless integration of abstraction layers s…
Software tools for quantum control: Improving quantum computer performance through noise and error suppression
Harrison Ball, Michael J. Biercuk, Andre Carvalho +10
Manipulating quantum computing hardware in the presence of imperfect devices and control systems is a central challenge in realizing useful quantum computers. Susceptibility to noi…
Simultaneous spectral estimation of dephasing and amplitude noise on a qubit sensor via optimally band-limited control
Virginia Frey, Leigh M. Norris, Lorenza Viola +1
The fragility of quantum systems makes them ideally suited for sensing applications at the nanoscale. However, interpreting the output signal of a qubit-based sensor is generally c…
Dynamically corrected gates suppress spatio-temporal error correlations as measured by randomized benchmarking
C. L. Edmunds, C. Hempel, R. J. Harris +3
Quantum error correction provides a path to large-scale quantum computers, but is built on challenging assumptions about the characteristics of the underlying errors. In particular…
Phase-modulated entangling gates robust to static and time-varying errors
Alistair R. Milne, Claire L. Edmunds, Cornelius Hempel +3
Entangling operations are among the most important primitive gates employed in quantum computing and it is crucial to ensure high-fidelity implementations as systems are scaled up.…
Optimally band-limited spectroscopy of control noise using a qubit sensor
Leigh M. Norris, Dennis Lucarelli, Virginia M. Frey +3
Classical control noise is ubiquitous in qubit devices, making its accurate spectral characterization essential for designing optimized error suppression strategies at the physical…