1 citations · 1 across the 2 of their papers we have counts for
4 papers
The Pinnacle Architecture: Reducing the cost of breaking RSA-2048 to 100 000 physical qubits using quantum LDPC codes
Paul Webster, Lucas Berent, Omprakash Chandra +5
The realisation of utility-scale quantum computing inextricably depends on the design of practical, low-overhead fault-tolerant architectures. We introduce the Pinnacle Architectur…
Protected phase gate for the - qubit using its internal modes
Xanda C Kolesnikow, Thomas B Smith, Felix Thomsen +2
Protected superconducting qubits such as the - qubit promise to substantially reduce physical error rates. However, a key challenge in the field is designing gates for these…
Low-overhead magic state distillation with color codes
Seok-Hyung Lee, Felix Thomsen, Nicholas Fazio +2
Fault-tolerant implementation of non-Clifford gates is a major challenge for achieving universal fault-tolerant quantum computing with quantum error-correcting codes. Magic state d…
Low-overhead quantum computing with the color code
Felix Thomsen, Markus S. Kesselring, Stephen D. Bartlett +1
Fault-tolerant quantum computation demands significant resources: large numbers of physical qubits must be checked for errors repeatedly to protect quantum data as logic gates are…