359 citations · 570 across the 7 of their papers we have counts for
7 papers
Simulations of Shor's Algorithm using Matrix Product States
David S. Wang, Charles D. Hill, Lloyd C. L. Hollenberg
We show that under the matrix product state formalism the states produced in Shor's algorithm can be represented using O(max(, )) space, where l is the number of bit…
Fault-tolerant quantum error correction code conversion
Charles D. Hill, Austin G. Fowler, David S. Wang +1
In this paper we demonstrate how data encoded in a five-qubit quantum error correction code can be converted, fault-tolerantly, into a seven-qubit Steane code. This is achieved by…
Quantum computing with nearest neighbor interactions and error rates over 1%
David S. Wang, Austin G. Fowler, Lloyd C. L. Hollenberg
Large-scale quantum computation will only be achieved if experimentally implementable quantum error correction procedures are devised that can tolerate experimentally achievable er…
Surface code quantum error correction incorporating accurate error propagation
Austin G. Fowler, David S. Wang, Lloyd C. L. Hollenberg
The surface code is a powerful quantum error correcting code that can be defined on a 2-D square lattice of qubits with only nearest neighbor interactions. Syndrome and data qubits…
Surface code quantum communication
Austin G. Fowler, David S. Wang, Charles D. Hill +3
Quantum communication typically involves a linear chain of repeater stations, each capable of reliable local quantum computation and connected to their nearest neighbors by unrelia…
Graphical algorithms and threshold error rates for the 2d colour code
D. S. Wang, A. G. Fowler, C. D. Hill +1
Recent work on fault-tolerant quantum computation making use of topological error correction shows great potential, with the 2d surface code possessing a threshold error rate appro…