8 citations · 8 across the 1 of their papers we have counts for
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Interleaving: Modular architectures for fault-tolerant photonic quantum computing
Hector Bombin, Isaac H. Kim, Daniel Litinski +5
Useful fault-tolerant quantum computers require very large numbers of physical qubits. Quantum computers are often designed as arrays of static qubits executing gates and measureme…
Universal fault-tolerant measurement-based quantum computation
Benjamin J. Brown, Sam Roberts
Certain physical systems that one might consider for fault-tolerant quantum computing where qubits do not readily interact, for instance photons, are better suited for measurement-…
Symmetry-protected self-correcting quantum memories
Sam Roberts, Stephen D. Bartlett
A self-correcting quantum memory can store and protect quantum information for a time that increases without bound with the system size and without the need for active error correc…
Contextuality as a resource for measurement-based quantum computation beyond qubits
Markus Frembs, Sam Roberts, Stephen D. Bartlett
Contextuality - the obstruction to describing quantum mechanics in a classical statistical way - has been proposed as a resource that powers quantum computing. The measurement-base…