Magnetic Orientation as a Non-Electronic Bit
Authors/Creators
Description
This note records a conceptual direction that follows from the Cohesion UFT c-bit
framework [2]: the use of stable magnetic field orientation as a binary information
carrier, bypassing electron transport entirely. The physical principle is simple. A stable
magnetic moment occupies the n = 2 bipolar recursion geometry established in the
series. Two stable orientations exist by the geometry of that mode. The restoring
torque returns the moment to its natural axis without external energy input — this is
the free reset step. Writing a bit requires only a small field perturbation to displace the
moment from its stable orientation — this is the cost step. Reading requires detecting
orientation, not measuring current flow. No electron transport is required at any stage.
This note does not propose a device design or make engineering claims. It records
the physical principle and identifies the direction for researchers working in spintronics
and magnetic computing. The connection between the Cohesion UFT geometric account
of magnetic stability and the engineering of non-electronic binary systems is identified
here as an open direction, not a derived result.
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Gilbert_Magnetic_Cbit (1).pdf
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Additional details
Additional titles
- Subtitle (English)
- A Conceptual Note on the Cohesion UFT c-bit and the Direction of Magnetic Computing
References
- Gilbert, D.A., Cohesion: A Unified Field Theory of Matter and Motion, v3, Independent Researcher (2026).
- Gilbert, D.A., Cohesion Computing: Information Processing Through Hexapolar-Bipolar Recursion States, Independent Researcher (2026).
- Gilbert, D.A., The Binary Recursion Toggle: Hexapolar and Bipolar States, Independent Researcher (2026).