Back to Search Start Over

Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Authors :
Zimborás, Zoltán
Koczor, Bálint
Holmes, Zoë
Borrelli, Elsi-Mari
Gilyén, András
Huang, Hsin-Yuan
Cai, Zhenyu
Acín, Antonio
Aolita, Leandro
Banchi, Leonardo
Brandão, Fernando G. S. L.
Cavalcanti, Daniel
Cubitt, Toby
Filippov, Sergey N.
García-Pérez, Guillermo
Goold, John
Kálmán, Orsolya
Kyoseva, Elica
Rossi, Matteo A. C.
Sokolov, Boris
Tavernelli, Ivano
Maniscalco, Sabrina
Publication Year :
2025

Abstract

In this perspective article, we revisit and critically evaluate prevailing viewpoints on the capabilities and limitations of near-term quantum computing and its potential transition toward fully fault-tolerant quantum computing. We examine theoretical no-go results and their implications, addressing misconceptions about the practicality of quantum error mitigation techniques and variational quantum algorithms. By emphasizing the nuances of error scaling, circuit depth, and algorithmic feasibility, we highlight viable near-term applications and synergies between error mitigation and early fault-tolerant architectures. Our discussion explores strategies for addressing current challenges, such as barren plateaus in variational circuits and the integration of quantum error mitigation and quantum error correction techniques. We aim to underscore the importance of continued innovation in hardware and algorithmic design to bridge the gap between theoretical potential and practical utility, paving the way for meaningful quantum advantage in the era of late noisy intermediate scale and early fault-tolerant quantum devices.<br />Comment: Comments welcome

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2501.05694
Document Type :
Working Paper