Quantum computing hardware is advancing rapidly toward utility-scale machines that will enable scientific breakthroughs. Many teams are pursuing distinct and difficult-to-compare routes to this goal, using different qubit technologies and logical architectures. Tracking progress toward quantum utility therefore require...
Timothy Proctor, Oliver Hart, Oliver Widzowski Maupin et al.· 0 citations
Noisy logic operations on a quantum computational register -- e.g., one or more qubits -- can be described by transfer matrices (a.k.a. CPTP maps or superoperators) that act linearly on the density matrix representing the register's quantum state. Collectively, these operations form a gate set. Gate sets have a gauge f...
J. D. de Mendoza, Corey I. Ostrove, T. Proctor et al.· 0 citations
This work introduces a broad framework for enhancing the sample efficiency of RB that is sufficiently powerful to extend the practical reach of RB beyond the multiqubit setting, and shows that synthetic RB protocols can reduce the complexity of measuring rotationally invariant error rates by two orders of magnitude rel...
Yale Fan, Riley J. Murray, T. Ladd et al.· Quantum Science and Technolo...· 4 citations
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