Quantum Error Correction & Fault Tolerance
1,511 papers
Quantum Error Correction & Fault Tolerance Research Context
This Quantum Articles category organizes published quantum research papers so readers can browse focused work by topic, source, and year.
Showing 1201-1212 of 1,511
Basic protocols in quantum reinforcement learning with superconducting circuits.
Lamata L.
Braiding by Majorana Tracking and Long-Range CNOT Gates with Color Codes
Daniel Litinski, Felix von Oppen
Circuit quantum acoustodynamics with surface acoustic waves.
Manenti R, Kockum AF, Patterson A, Behrle T, Rahamim J, Tancredi G, Nori F, Leek PJ.
Codes and Protocols for Distilling $T$, controlled-$S$, and Toffoli Gates
Jeongwan Haah, Matthew B. Hastings
Continuous-variable geometric phase and its manipulation for quantum computation in a superconducting circuit.
Song C, Zheng SB, Zhang P, Xu K, Zhang L, Guo Q, Liu W, Xu D, Deng H, Huang K, Zheng D, Zhu X, Wang H.
Deep Neural Network Probabilistic Decoder for Stabilizer Codes.
Krastanov S, Jiang L.
Demonstration of qubit operations below a rigorous fault tolerance threshold with gate set tomography.
Blume-Kohout R, Gamble JK, Nielsen E, Rudinger K, Mizrahi J, Fortier K, Maunz P.
Deterministic Quantum State Transfer and Generation of Remote Entanglement using Microwave Photons
Philipp Kurpiers, Paul Magnard, Theo Walter, Baptiste Royer, Marek Pechal, Johannes Heinsoo, Yves Salathé, Abdulkadir Akin, Simon Storz, Jean-Claude Besse, Simone Gasparinetti, Alexandre Blais, Andreas Wallraff
Dissipative quantum error correction and application to quantum sensing with trapped ions.
Reiter F, Sørensen AS, Zoller P, Muschik CA.
Distillation with sublogarithmic overhead
M. B. Hastings, J. Haah
Dynamically Correcting a CNOT Gate for any Systematic Logical Error.
Calderon-Vargas FA, Kestner JP.
Efficient decoding of random errors for quantum expander codes
Omar Fawzi, Antoine Grospellier, Anthony Leverrier