CANOR.TECH

Quantum Gravity Technology - Hardware & Software

Digitalis Nomadica & Decentralis Repositorium

Enter at the layer required.

canor.me is the research portfolio. This surface holds the executable stack — compact formalisms a reviewer can map onto machines, clusters, neuromorphic substrates, and high-update error correction. Claims here are authorial. They are not independently verified scientific results.

01 · Follow™

Quantum-Gravity Turing Computing

Runtime semantics for quantum-gravitational computation.

  • Operations are symbolic primitives for simulation, verification, and high-update dynamical error correction.
  • The unit of operation is the primitive, not only state-vector algebra.
  • Unruh–Lorentzian frames are the scale-variant contexts in which the runtime executes.
  • The engineering claim is compactness and a high update rate next to density-matrix error correction, with less global-singularity overhead. That claim is open to benchmark.

Isomorphism check

A computed change must be a signaled change.

QGCT is not a store wrapped around QGTC. Toggle a change on one layer only, and the surface refuses it. Both layers move, or neither does.

Isomorphism held. The two layers still name the same change.

DQG is the unification model. QGTC is the runtime that makes it executable. QGCT is the signaling layer held isomorphic to that runtime. ToE-N says where the stack should look like general relativity and where it should look like special relativity. Sensors close the loop: operators in observer-dependent frames, fusion across a network, VLBI as a live channel.