A SAT Scalpel for Lattice Surgery: Representation and Synthesis of Subroutines for Surface-Code Fault-Tolerant Quantum Computing
Daniel Bochen Tan, Murphy Yuezhen Niu, Craig Gidney
摘要
Quantum error correction is necessary for largescale quantum computing. A promising quantum error correcting code is the surface code. For this code, fault-tolerant quantum computing (FTQC) can be performed via lattice surgery, i.e., splitting and merging patches of code. Given the frequent use of certain lattice-surgery subroutines (LaS), it becomes crucial to optimize their design in order to minimize the overall spacetime volume of FTQC. In this study, we define the variables to represent LaS and the constraints on these variables. Leveraging this formulation, we develop a synthesizer for LaS, LaSsynth, that encodes a LaS construction problem into a SAT instance, subsequently querying SAT solvers for a solution. Starting from a baseline design, we can gradually invoke the solver with shrinking spacetime volume to derive more compact designs. Due to our foundational formulation and the use of SAT solvers, LaSsynth can exhaustively explore the design space, yielding optimal designs in volume. For example, it achieves 8% and 18% volume reduction respectively over two states-of-the-art human designs for the 15-to-1 T-factory, a bottleneck in FTQC.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了最后一个公式,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 Paper6
- Dependency-Aware Compilation for Surface Code Quantum ArchitecturesAbtin Molavi, Amanda Xu, Swamit Tannu, Aws AlbarghouthiOOPSLA 2025 · 被引用 10 次
- Variational Quantum Algorithms in the era of Early Fault ToleranceSiddharth Dangwal, Suhas Vittal, Lennart Maximilian Seifert, Frederic T. Chong 等ISCA 2025 · 被引用 8 次
- O3LS: Optimizing Lattice Surgery via Automatic Layout Searching and Loose SchedulingChenghong Zhu, Xian Wu, Jiahan Chen, Keming He 等ISCA 2026 · 被引用 4 次
- ARTERY: Fast Quantum Feedback using Branch PredictionWuwei Tian, Liqiang Lu, Siwei Tan, Yun Liang 等ISCA 2025 · 被引用 1 次
- Transpiler-Architecture Co-Design to Curb Clifford Costs in Fault-Tolerant Quantum ComputingMeng Wang, Chenxu Liu, Samuel A. Stein, Yufei Ding 等ISCA 2026
它引用的顶会 Paper2
- 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
- A Bridge-based Compression Algorithm for Topological Quantum CircuitsChen-Hao Hsu, Wan-Hsuan Lin, Wei-Hsiang Tseng, Yao-Wen ChangDAC 2021 · 被引用 5 次
相关 Paper
- QECC-Synth: A Layout Synthesizer for Quantum Error Correction Codes on Sparse ArchitecturesKeyi Yin, Hezi Zhang, Xiang Fang, Yunong Shi 等ASPLOS 2025 · 被引用 8 次
- TraceQ: Trace-Based Reconstruction of Quantum Circuit Dataflow in Surface-Code Fault-Tolerant Quantum ComputingTheodoros Trochatos, Christopher Kang, Andrew Wang, Frederic T. Chong 等HPCA 2026
- A synthesis framework for stitching surface code with superconducting quantum devicesAnbang Wu, Gushu Li, Hezi Zhang, Gian Giacomo Guerreschi 等ISCA 2022 · 被引用 21 次
- A bridge-based algorithm for simultaneous primal and dual defects compression on topologically quantum-error-corrected circuitsWei-Hsiang Tseng, Yao-Wen ChangDAC 2022 · 被引用 3 次
- Synchronization for Fault-Tolerant Quantum ComputersSatvik Maurya, Swamit TannuISCA 2025 · 被引用 4 次
