SRFM Quantum Protocol Phase 6: Fragmentation-Induced Structural Response Transition
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This dataset contains the full experimental framework and results for SRFM Quantum Protocol Phase 6. In this phase, we investigate topology-conditioned structural response behavior in quantum circuits under perturbations. Key contributions: - Verification of Phase5 structural asymmetry (chain amplification vs ring suppression)- Scaling validation from n=6 to n=8- Non-monotonic dependence on perturbation strength (k and α = k/|E|)- Strong dependence on fragmentation geometry- Topology interpolation revealing phase-like transitions- Statistical characterization of SRFM response as a distribution- Identification of explosive configurations under specific structural conditions Explosive responses (Δ|parity| ≥ 0.20) are observed when: - largest_component_size is approximately 3–4 (for n=8)- fragmentation is moderate- component balance is non-uniform but structured These results suggest that SRFM behavior is governed by topology-conditioned fragmentation dynamics, exhibiting stochastic phase-like transitions. This repository includes:- circuit definitions- execution scripts- raw results- processed tables- publication figures- research summary (PDF) This work establishes the first systematic exploration of fragmentation-induced response in SRFM quantum systems.
本数据集涵盖SRFM量子协议第六阶段(SRFM Quantum Protocol Phase 6)完整的实验框架与实验成果。 在此阶段中,本研究针对受拓扑条件约束的量子电路在扰动下的结构响应特性展开探究。 核心研究贡献如下: - 验证了第五阶段的结构不对称性(链放大效应与环抑制效应) - 完成了从n=6到n=8的尺度有效性验证 - 揭示了扰动强度(k与α=k/|E|)的非单调依赖关系 - 证明了对碎裂几何构型的强依赖性 - 通过拓扑插值实验发现了类相变行为 - 将SRFM响应的统计特征表征为分布形式 - 在特定结构条件下识别出爆发型构型 当满足以下条件时,可观测到爆发型响应(Δ|parity| ≥ 0.20): - 对于n=8的场景,最大连通分量尺寸约为3~4 - 碎裂程度处于中等水平 - 连通分量分布不均匀但具有结构化特征 上述结果表明,SRFM的行为由受拓扑条件约束的碎裂动力学机制主导,并表现出随机类相变特性。 本研究仓库包含以下内容: - 电路定义文件 - 执行脚本 - 原始实验结果 - 处理后的表格数据 - 用于发表的绘图素材 - 研究总结PDF文档 本工作首次对SRFM量子系统中碎裂诱导的响应行为开展了系统性探索。



