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Solid-State Topological Waveguide Circuit and Device for Fault-Tolerant Quantum Information Processing Immune to Environmental Decoherence

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Zenodo2026-09-25 更新2026-10-01 收录
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Summary of the Technical Package This repository contains the complete, verified technical documentation and intellectual property package for a solid-state, fault-tolerant topological quantum information processing architecture. Operating strictly under the global variational principle of least effort ($\delta \mathcal{S}_{EDSA} = 0$) within a continuous Riemann-Cartan spacetime continuum with non-vanishing torsion, this framework replaces traditional local quantum isolation methodologies with hardware-level geometric noise-filtering. The comprehensive technical package is composed of three interconnected primary documents: 1. **Specification (Specification.pdf):** Detailed physical description, mathematical foundations (Non-Linear Topological Growth Equation - NL-EDSA), and the engineering mechanisms governing effective mass divergence and group velocity nullification ($v_g^* \to 0$). 2. **Voluntary Patent Claims (Claims.pdf):** Formal intellectual property boundary definition detailing the exact structure of the hardware components and the operational execution sequence of universal topological logic gates. 3. **Patent Drawings (Drawings.pdf):** High-resolution, mathematically aligned TikZ vector schematics illustrating the system block architecture and the localized multi-axial channel geometry required for stable solitonic qubit confinement. Technical Subsystem Architecture The hardware architecture specifies an integrated solid-state circuit utilizing an engineered semiconductor or nanophotonic substrate configured across four distinct operational zones: - **Block I (Golden Injection Unit):** Synthesizes and injects a phase-coherent continuous wavefront at the exact Golden Informational Flow Angle of $137.5^\circ$. - **Block II (Nodal Interaction Matrix):** A lithographic grid of three-dimensional waveguides forming trihedral packing intersections oriented at the Material Packing Angle of $120^\circ$. The geometric mismatch between Block I and Block II engineers a permanent background torsion gap—the Remnant Resonance Constant ($\mathcal{K}_\tau = 17.5^\circ$)—which serves as a rigid macroscopic shear barrier suppressing ambient thermal fluctuations. - **Block III (Braiding Control System):** A grid of low-strain piezoelectric or electro-optic path actuators utilizing a Code 3 valence bifurcation topology and a $45^\circ$ insertion angle to physically route and permute adjacent solitons via adiabatic braiding. - **Block IV (Homodyne Readout Unit):** An elastic, non-destructive measurement system based on evanescent coupling with the soliton's hyperbolic envelope, extracting binary logical states via an exact $120^\circ$ spatial fringe shift under strictly isentropic conditions ($d\mathcal{S}_{geo}/dt \equiv 0$). Core Mathematical Invariants - **Torsion Shear Gap ($\mathcal{K}_\tau$):** $17.5^\circ$ - **Nodal Compressing Well Symmetries ($\theta_N$):** $120^\circ$ - **Unitary Exchange / Braiding Phase ($\theta_{ex}$):** $137.5^\circ$ - **Fractional Topological Charge ($Q_{top}$):** $\frac{55}{48}$ *Note on Access and IP Protection:* This documentation package represents a complete minimum viable technical definition intended for a provisional patent application filed with intellectual property offices (e.g., USPTO).

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Zenodo
创建时间:
2026-09-25
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