Quantum Error Correction & Fault Tolerance

106 papers for year 2025

Showing 1-12 of 106

A Compilation Framework for Quantum Circuits with Mid-Circuit Measurement Error Awareness

Ming Zhong, Zhemin Zhang, Xiangyu Ren, Chenghong Zhu, Siyuan Niu, Zhiding Liang

2025 arXiv preprint

A Concatenated Dual Displacement Code for Continuous-Variable Quantum Error Correction

Fucheng Guo, Frank Mueller, Yuan Liu

2025 arXiv preprint

A manufacturable surface code architecture for spin qubits with fast transversal logic

Jason D. Chadwick, Willers Yang, Joshua Viszlai, Frederic T. Chong

2025 arXiv preprint

A Resource-Virtualized and Hardware-Aware Quantum Compilation Framework for Real Quantum Computing Processors.

Xu HZ, Chai XD, Hu MJ, Wang ZA, Feng YL, Chen Y, Zhang X, Wang J, Zhuang WF, Jin YX, Jin Y, Yu H, Fan H, Liu DE.

2025 Research (Wash D C)

A scalable and real-time neural decoder for topological quantum codes

Andrew W. Senior, Thomas Edlich, Francisco J. H. Heras, Lei M. Zhang, Oscar Higgott, James S. Spencer, Taylor Applebaum, Sam Blackwell, Justin Ledford, Akvilė Žemgulytė, Augustin Žídek, Noah Shutty, Andrew Cowie, Yin Li, George Holland, Peter Brooks, Charlie Beattie, Michael Newman, Alex Davies, Cody Jones, Sergio Boixo, Hartmut Neven, Pushmeet Kohli, Johannes Bausch

2025 arXiv preprint

Accurate Leakage Speculation for Quantum Error Correction

Chaithanya Naik Mude, Swamit Tannu

2025 arXiv preprint

Addressable fault-tolerant universal quantum gate operations for high-rate lift-connected surface codes

Josias Old, Juval Bechar, Markus Müller, Sascha Heußen

2025 arXiv preprint

Addressable gate-based logical computation with quantum LDPC codes

Laura Pecorari, Francesco Paolo Guerci, Hugo Perrin, Guido Pupillo

2025 arXiv preprint

An Error Correctable Implication Algebra for a System of Qubits

Morrison Turnansky

2025 arXiv preprint

An integrated optical hardware for realization of quantum error correction operators.

Armaghani S, Rostami A.

2025 Sci Rep

Any Clifford+T circuit can be controlled with constant T-depth overhead

Isaac H. Kim, Tuomas Laakkonen

2025 arXiv preprint

Automated Compilation Including Dropouts: Tolerating Defective Components in Stabiliser Codes

Stasiu Wolanski

2025 arXiv preprint