Integrated Magneto-Optical Memory Node Proposal
Abstract
This work presents a unified conceptual architecture combining a monopole‑centred spherical optical processor with an ion‑pair engineered L1₀ FePt magnetic memory model. The optical subsystem uses a synthetic radial field, spherical geometry, aperiodic tiling, and three‑dimensional protrusions to generate extremely high‑density multi‑line optical signatures. A structured optical signalling language and control system enable programmable operation across thousands to millions of candidate channels. The magnetic subsystem investigates whether controlled positive–negative ion pairs embedded in ordered L1₀ FePt can tune magnetic anisotropy, thermal stability, and writability for ultra‑high‑density memory applications. Together, these concepts form an integrated magneto‑optical node architecture intended as an open, extensible framework for future research in photonics, metamaterials, defect engineering, and nanoscale magnetic storage.
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Authors: MICHAEL BISWELL