Orch-OR Quantum Collapse 2D: Microtubule Objective Reduction
2D companion to the 3D Orch-OR scene: the same Diosi-Penrose gravitational self-energy model of tubulin dimers collapsing out of quantum superposition, now read off a scrolling unrolled-lattice grid and a live self-energy strip chart.
This is the 2D counterpart to the 3D Orch-OR Microtubule Quantum Collapse scene, running the identical Diosi-Penrose model: 442 tubulin dimers, unrolled here into a flat 13-protofilament grid, are recruited into quantum superposition and accumulate gravitational self-energy until the ensemble reaches the ħ threshold and collapses in one synchronized objective-reduction event. Instead of an orbiting 3D lattice, this version renders the grid scrolling sideways and adds a live strip chart of the self-energy phase climbing toward collapse — the same recruitment rate, thermal decoherence and gravitational coupling controls drive both scenes, and the predicted collapse period and rate you see here match the 3D scene exactly.
2D companion to the 3D Orch-OR scene: the same Diosi-Penrose gravitational self-energy model of tubulin dimers collapsing out of quantum superposition, now read off a scrolling unrolled-lattice grid and a live self-energy strip chart.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install