Current Flow in the AAM the chirality – surplus/deficit dual mechanism · transport shell architecture · conditional macro-cloud

Normal current — flows entirely within transport shells
Circuit closed — orbitrons drifting from surplus (−) terminal to deficit (+) terminal through the transport shells.
background dots = SL₋₂ aether medium (pervades everything) macro-cloud: overflow orbitrons form a surface plasma on the conductor switch load (imperfect meshing → collisions → heat) electrolyte − plate (e.g. zinc) + plate (e.g. copper) − surplus terminal net LEFT-handed chirality chemistry releases orbitrons → excess → PRESSURE + deficit terminal net RIGHT-handed chirality chemistry consumes orbitrons → depletion → VACUUM voltage = chirality-bias intensity (set by chemistry) current direction = surplus → deficit (pressure → vacuum) orbitron flow (drift ~ mm/s) the wire is a passive transport path — no chirality needed in the wire "conventional current" points the other way (historical sign convention) aether circulation around the wire (the "magnetic field": shear vorticity from bulk orbitron flow) TWO SPEEDS signal ≈ light speed chirality state propagates through the aether drift ≈ mm/s orbitrons through transport shells − TERMINAL SURFACE surplus orbitrons crowd in → PRESSURE net LH chirality — statistical bias (like magnetic domains) Zoom A — the source: where BOTH mechanisms live ATOMS IN THE WIRE the wire is just a passive path transport shells — ~90°, uncoupled bonding shells — hold the lattice Zoom B — transport shell architecture shell rotation carries orbitrons gear-like, atom to atom insulators lack these shells WIRE CROSS-SECTION ⊙ orbitron flow toward viewer Zoom C — the magnetic field is aether in motion flow drags aether → shear → circumferential vorticity
left-handed chirality (−) right-handed chirality (+) orbitrons bonding shells aether vorticity (magnetic field) macro-cloud (overflow only)
How to read this animation (the AAM dual mechanism, step by step)
  1. Chirality lives at the sources, not in the wire. Battery chemistry biases the handedness of surface orbitron orbits — net left-handed at one terminal, net right-handed at the other (a statistical bias, like magnetic domains — see Zoom A). Chirality is a pseudoscalar: it sets charge identity, electrostatic force, and voltage magnitude, but it has no spatial direction, so it cannot choose which way current flows.
  2. Surplus/deficit is the pump. The same chemistry physically releases orbitrons at the − plate (surplus → pressure) and consumes them at the + plate (deficit → vacuum). Orbitrons flow from pressure to vacuum through the external wire — that is what sets the current direction.
  3. The wire is passive. Each conductor atom has flattened bonding shells (parallel to the surface, touching neighbors — they hold the lattice) and slightly smaller transport shells at roughly 90°, uncoupled from neighbors (Zoom B). Orbitrons pass gear-like through the transport shell network. Conductors have transport shells; insulators do not. Resistance is imperfect meshing → collisions → heat (the load). (Orbitrons are drawn enormously exaggerated in size and reduced in number — in reality billions of tiny orbitrons populate each shell.)
  4. Two speeds. Close the switch and watch: the chirality state races around the circuit through the aether at near-light speed (the bright signal pulse), while the orbitrons themselves drift at mm/s.
  5. The magnetic field is not a separate entity: bulk orbitron flow drags the surrounding SL₋₂ aether, and the velocity shear produces circumferential circulation around the wire (Zoom C).
  6. The macro-cloud is conditional. Slide the current density up: normal current flows entirely within the transport shells; near 10⁶ A/cm² the shells saturate (Bridgman's Ohm's-law deviations); by ~10⁹ A/cm² overflow orbitrons spill onto the conductor surface as a plasma layer (exploding-wire experiments). A lightning channel is the extreme case — a macro-cloud with no transport shells at all.