Variational Quantum Algorithms in the era of Early Fault Tolerance
Siddharth Dangwal, Suhas Vittal, Lennart Maximilian Seifert, Frederic T. Chong, Gokul Subramanian Ravi
摘要
Quantum computing roadmaps predict the availability of 10,000qubit devices within the next 3-5 years.With projected two-qubit error rates of 0.1%, these systems will enable certain operations under quantum error correction (QEC) using lightweight codes, offering significantly improved fidelities compared to the NISQ era.However, the high qubit cost of QEC codes like the surface code (especially at near-threshold physical error rates) limits the error correction capabilities of these devices.In this emerging era of Early Fault Tolerance (EFT), it will be essential to use QEC resources efficiently and focus on applications that derive the greatest benefit.In this work, we investigate the implementation of Variational Quantum Algorithms in the EFT regime (EFT-VQA).We explore the ideas of partial quantum error correction (pQEC), a strategy that error-corrects Clifford operations while performing 𝑅 𝑧 (𝜃 ) rotations via magic state injection instead of the more expensive T-state distillation, and adapt it to VQAs.Our results show that pQEC can improve VQA fidelities by 9.27x over standard approaches.Furthermore, we propose architectural optimizations that reduce circuit latency by ∼ 2x, and achieve qubit packing efficiency of 66% in the EFT regime.The source code can be accessed here https: //github.com/siddharthdangwal/EFT-VQA.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper2
- iSwitch: QEC on Demand via In-Situ Encoding of Bare Qubits for Ion Trap ArchitecturesKeyi Yin, Xiang Fang, Zhuo Chen, David Hayes 等ASPLOS 2026
- TreeVQA: A Tree-Structured Execution Framework for Shot Reduction in Variational Quantum AlgorithmsYuewen Hou, Dhanvi Bharadwaj, Gokul Subramanian RaviASPLOS 2026
它引用的顶会 Paper15
- Systematic Crosstalk Mitigation for Superconducting Qubits via Frequency-Aware CompilationYongshan Ding, Pranav Gokhale, Sophia Fuhui Lin, Richard Rines 等MICRO 2020 · 被引用 67 次
- ADAPT: Mitigating Idling Errors in Qubits via Adaptive Dynamical DecouplingPoulami Das, Swamit S. Tannu, Siddharth Dangwal, Moinuddin K. QureshiMICRO 2021 · 被引用 64 次
- Paulihedral: a generalized block-wise compiler optimization framework for Quantum simulation kernelsGushu Li, Anbang Wu, Yunong Shi, Ali Javadi-Abhari 等ASPLOS 2022 · 被引用 60 次
- Astrea: Accurate Quantum Error-Decoding via Practical Minimum-Weight Perfect-MatchingSuhas Vittal, Poulami Das, Moinuddin K. QureshiISCA 2023 · 被引用 47 次
- CAFQA: A Classical Simulation Bootstrap for Variational Quantum AlgorithmsGokul Subramanian Ravi, Pranav Gokhale, Yi Ding, William M. Kirby 等ASPLOS 2023 · 被引用 39 次
相关 Paper
- Accelerating Computation in Quantum LDPC CodeJungmin Cho, Hyeonseong Jeong, Junpyo Kim, Junhyuk Choi 等ASPLOS 2026
- Transpiler-Architecture Co-Design to Curb Clifford Costs in Fault-Tolerant Quantum ComputingMeng Wang, Chenxu Liu, Samuel A. Stein, Yufei Ding 等ISCA 2026
- AutoBraid: A Framework for Enabling Efficient Surface Code Communication in Quantum ComputingFei Hua, Yan-Hao Chen, Yuwei Jin, Chi Zhang 等MICRO 2021 · 被引用 26 次
- VAQEM: A Variational Approach to Quantum Error MitigationGokul Subramanian Ravi, Kaitlin N. Smith, Pranav Gokhale, Andrea Mari 等HPCA 2022
- EQC: ensembled quantum computing for variational quantum algorithmsSamuel A. Stein, Nathan Wiebe, Yufei Ding, Bo Peng 等ISCA 2022 · 被引用 46 次
