A first-principles research architecture for programmable reaction-space topology, engineered dissipation, and massively parallel near-universal nanofabrication.
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Updated
Sep 4, 2026 - HTML
A first-principles research architecture for programmable reaction-space topology, engineered dissipation, and massively parallel near-universal nanofabrication.
A falsifiable speculative-physics theory for programmable matter using Möbius topology, phonon–polaritons, quantum geometry, structured dissipation, and topological mass transport.
Finite-element study of quasicrystal-perforated MEMS resonators and what their mode structure can (and cannot) compute as a physical reservoir. Includes the paper.
Lab report: a symmetry selection rule for computation in phononic / quasicrystal MEMS reservoirs.
When does topological structure make an analog reservoir tolerate a dead element? A pre-registered, honestly-scoped SSH-reservoir simulation study -- boundary condition and negatives reported as carefully as the positives.
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