DawsonInstitute / hts-coils Star 1 Code Issues Pull requests Discussions Comprehensive computational framework for REBCO HTS coils and plasma physics applications. Features validated 7.07T superconducting magnet designs, Lentz soliton simulation with interferometric detection, high-beta plasma confinement analysis, and multi-physics FEA integration. Open-source Python implementation with interactive Jupyter notebooks. jupyter-notebook scientific-computing computational-physics finite-element-analysis mybinder plasma-physics fenics multi-physics magnetohydrodynamics comsol-multiphysics fusion-energy warp-field rebco high-temperature-superconductors superconducting-magnets plasma-confinement soliton-physics antimatter-confinement interferometric-detection spacetime-physics Updated Jan 29, 2026 Jupyter Notebook
AEjonanonymous / Gardner-Logic-Bridge Star 1 Code Issues Pull requests Rescuing Moore’s Law via Room-Temperature Soliton Integration in Standard Silicon. information-theory javascript-engine systemverilog hardware-designs logic-gates constraint-based-modeling fgpa topological-materials inverse-scattering computational-methods moores-law soliton-dynamics independent-time softcore-processor-design room-temperature-superconductors post-cmos soliton-physics threshold-optimization iso-velocity-computation Updated Apr 1, 2026 SystemVerilog