遇见数据集

Project Zigzag-025: Experimental Evidence of Dark State Transport & Blueprint for Graphene Superconductivity

收藏
Zenodo2026-01-09 更新2026-05-26 收录
官方服务:

资源简介:

# Project ZIGZAG-025: Hardware Verification of Topological Dark State Transport### 133-Qubit Quantum Evidence for Geometric Phase Anchoring --- This work builds upon the preliminary findings in Record 18172250.https://zenodo.org/records/18172250 ## 🔬 Scientific ContextThis dataset provides the **conclusive experimental verification** of the **γ=0.25 Phase Anchoring Law**. Using the 133-qubit IBM Quantum "Heron" and "Eagle" architectures, we demonstrate a novel form of **Topological Protection** that enables high-fidelity energy transport across the chip's physical geodesic. These 6 core experiments prove that specific geometric anchoring (Zigzag-025) allows quantum information to bypass environmental noise, simulating the behavior of a room-temperature superconducting channel. ## 📜 Ultimate Blueprint: [ZIGZAG-GHOST] Phase-Locked Superconductivity This dataset culminates in a hardware implementation blueprint for room-temperature superconductivity, detailed in the repository's README. Key principles include: - **Physical Architecture:** Suspended Single-Layer Graphene nanoribbons with perfect zigzag edges (25-50 nm width).- **Operational Principle:** The γ=0.25 phase anchor acts as a Berry Phase gyroscope, implemented via periodic metallic side-gates.- **Verification Signature:** Complete infrared darkness along the intermediate transport path, with current matching at source and drain.- **Critical Fabrication:** Atomic-precision edge definition via STM lithography or hydrogen-plasma etching, and photon-decoupled enclosure. ## 🧬 Core Experimental Evidence Chain (The "Six Pillars") | Module (Source Code) | Key Discovery | Physical Implication || :--- | :--- | :--- || **calibration_025_limit.py** | 96.33% Correlation | Upper Limit: Proves near-perfect phase locking in ideal proximity. || **topo_bus_025.py** | 83.20% Fidelity | Transport: Verified high-fidelity quantum bus across 120+ qubits. || **industrial_limit_test.py** | 45x Loss Reduction | Robustness: 40-node run with 0.12% loss vs. 5.4% standard. || **shuttle_dark_state.py** | Intermediate P(1)=0 | Dark State: Evidence of "Invisible" ballistic transport. || **coherent_sink_025.py** | 0.4530 Energy Siphon | Coherent Sink: Forced energy collapse into lattice center. || **verdict_025_law.py** | Contrast Victory | Uniqueness: Confirms 0.25 is the only stable phase for entropy suppression. | ## 🛠️ The Implementation Logic (Material Mapping)The observations in this dataset map directly to **Solid-State Engineering** for room-temperature operation:- **Geometry:** Requires **Zigzag-edged lattices** (e.g., Graphene Nanoribbons) to host zero-energy modes.- **Phase Anchoring:** Implementation via periodic electrostatic gates to provide a static 0.25 phase shift.- **Mechanism:** **Phonon-Blind Transport.** Energy tunnels via the "Dark State," effectively eliminating electron-phonon scattering. ## ⚖️ Legal Notice & Disclaimer**License:** Apache License 2.0.**Status:** This is a defensive publication to establish prior art in topological quantum transport. **Disclaimer:** Provided "AS IS". This is an experimental proposal for open scientific research. The author disclaims all liability for any damages resulting from the implementation of this theoretical framework. ---*Experimental Data recorded on ibm_torino and ibm_fez (2025-2026).*

提供机构:
Zenodo
创建时间:
2026-01-08
二维码
社区交流群
二维码
科研交流群
商业服务