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20232025
most citedBenchmarking logical three-qubit quantum Fourier transform encoded in the Steane code on a trapped-ion quantum computer

4 citations · 6 across the 3 of their papers we have counts for

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quant-ph2025

Demonstrating an unconditional separation between quantum and classical information resources

William Kretschmer, Sabee Grewal, Matthew DeCross +8

A longstanding goal in quantum information science is to demonstrate quantum computations that cannot be feasibly reproduced on a classical computer. Such demonstrations mark major…

quant-ph20251 cited

Breaking even with magic: demonstration of a high-fidelity logical non-Clifford gate

Shival Dasu, Simon Burton, Karl Mayer +7

Encoding quantum information to protect it from errors is essential for performing large-scale quantum computations. Performing a universal set of quantum gates on encoded states d…

quant-ph20251 cited

Order-of-magnitude extension of qubit lifetimes with a decoherence-free subspace quantum error correction code

Shival Dasu, Ben Criger, Cameron Foltz +9

Constructing an efficient and robust quantum memory is central to the challenge of engineering feasible quantum computer architectures. Quantum error correction codes can solve thi…

quant-ph20244 cited

Benchmarking logical three-qubit quantum Fourier transform encoded in the Steane code on a trapped-ion quantum computer

Karl Mayer, Ciarán Ryan-Anderson, Natalie Brown +20

We implement logically encoded three-qubit circuits for the quantum Fourier transform (QFT), using the [[7,1,3]] Steane code, and benchmark the circuits on the Quantinuum H2-1 trap…

quant-ph2023

Fault-Tolerant One-Bit Addition with the Smallest Interesting Colour Code

Yang Wang, Selwyn Simsek, Thomas M. Gatterman +9

Fault-tolerant operations based on stabilizer codes are the state of the art in suppressing error rates in quantum computations. Most such codes do not permit a straightforward imp…