Quantum error mitigation
For quantum computers to successfully solve real-world problems, it is necessary to tackle
the challenge of noise: the errors that occur in elementary physical components due to …
the challenge of noise: the errors that occur in elementary physical components due to …
Biology and medicine in the landscape of quantum advantages
BA Cordier, NPD Sawaya… - Journal of the …, 2022 - royalsocietypublishing.org
Quantum computing holds substantial potential for applications in biology and medicine,
spanning from the simulation of biomolecules to machine learning methods for subty** …
spanning from the simulation of biomolecules to machine learning methods for subty** …
Universal sampling lower bounds for quantum error mitigation
Numerous quantum error-mitigation protocols have been proposed, motivated by the critical
need to suppress noise effects on intermediate-scale quantum devices. Yet, their general …
need to suppress noise effects on intermediate-scale quantum devices. Yet, their general …
Machine learning for practical quantum error mitigation
Quantum computers have progressed towards outperforming classical supercomputers, but
quantum errors remain the primary obstacle. In the past few years, the field of quantum error …
quantum errors remain the primary obstacle. In the past few years, the field of quantum error …
Can error mitigation improve trainability of noisy variational quantum algorithms?
Abstract Variational Quantum Algorithms (VQAs) are often viewed as the best hope for near-
term quantum advantage. However, recent studies have shown that noise can severely limit …
term quantum advantage. However, recent studies have shown that noise can severely limit …
Extending quantum probabilistic error cancellation by noise scaling
We propose a general framework for quantum error mitigation that combines and
generalizes two techniques: probabilistic error cancellation (PEC) and zero-noise …
generalizes two techniques: probabilistic error cancellation (PEC) and zero-noise …
Quantum computing with and for many-body physics
Quantum computing technologies are making steady progress. This has opened new
opportunities for tackling problems whose complexity prevents their description on classical …
opportunities for tackling problems whose complexity prevents their description on classical …
Quantum dynamics simulations beyond the coherence time on noisy intermediate-scale quantum hardware by variational trotter compression
We demonstrate a postquench dynamics simulation of a Heisenberg model on present-day
IBM quantum hardware that extends beyond the coherence time of the device. This is …
IBM quantum hardware that extends beyond the coherence time of the device. This is …
The electron density: a fidelity witness for quantum computation
There is currently no combination of quantum hardware and algorithms that can provide an
advantage over conventional calculations of molecules or materials. However, if or when …
advantage over conventional calculations of molecules or materials. However, if or when …
Quantum Information Processing, Sensing, and Communications: Their Myths, Realities, and Futures
The recent advances in quantum information processing, sensing, and communications are
surveyed with the objective of identifying the associated knowledge gaps and formulating a …
surveyed with the objective of identifying the associated knowledge gaps and formulating a …