Orch-OR Microtubule Quantum Collapse
Interactive 3D model of the Penrose-Hameroff Orchestrated Objective Reduction (Orch-OR) hypothesis: tubulin dimers in a microtubule lattice enter quantum superposition, accumulate gravitational self-energy, and undergo a synchronized objective-reduction collapse once the Diosi-Penrose threshold is crossed.
A 3D lattice of 442 tubulin dimers arranged as a 13-protofilament microtubule, modelling the Penrose-Hameroff Orchestrated Objective Reduction hypothesis. Dimers are recruited into quantum superposition, accumulating gravitational self-energy under the Diosi-Penrose criterion until the ensemble reaches the ħ threshold and collapses in a single synchronized objective-reduction event — repeating as a train of discrete "conscious moments" whose rate depends on recruitment strength, thermal decoherence, and the gravitational coupling constant.
Model the Penrose-Hameroff Orchestrated Objective Reduction hypothesis: recruit tubulin dimers in a 3D microtubule lattice into quantum superposition and watch the ensemble collapse in a synchronized objective-reduction event once the Diosi-Penrose gravitational self-energy threshold is crossed.
3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install