Topologically Stabilized Hybrid Fusion Device: Combining Spherical Electrostatic Confinement with Toroidal Magnetic Geometry
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We propose a novel fusion reactor architecture based on topological phase transition principles. The design combines spherical electrostatic confinement (inspired by ball lightning stability) with toroidal magnetic confinement (tokamak/stellarator),creating a hybrid S2 ⊃ T 2 topology. Theoretical analysis shows synergistic stabilization through topological charge conservation and magnetic flux quantization. Predicted performance exceeds conventional designs with Q > 15 and τE ∼ 100 sat 10 T field strength. The approach leverages gravitational wave and quantum gravity research insights applied to plasma confinement.
本研究提出一种基于拓扑相变(topological phase transition)原理的新型聚变反应堆架构。该设计融合了球形静电约束(spherical electrostatic confinement,受球状闪电稳定性启发)与环形磁约束(toroidal magnetic confinement,托卡马克/仿星器)技术,构建出混合S₂⊃T₂拓扑结构。理论分析表明,该架构可通过拓扑电荷守恒与磁通量量化实现协同稳定效应。其预测性能优于传统聚变装置,聚变增益因子Q>15,在10特斯拉(T)磁场强度下,能量约束时间τE约为100秒。该方法借鉴了引力波(gravitational wave)与量子引力(quantum gravity)领域的研究成果,并将其应用于等离子体约束(plasma confinement)技术中。



