Displacement is amplitude
Each mass position directly represents a component of the quantum wavefunction.
Room-temperature analog computers that map the Schrödinger equation to real, coupled oscillators. Deterministic. Continuously readable. Built for the bench.
Quantum simulation without
Analog classical simulation (ACS) transforms quantum evolution into real-valued ordinary differential equations that physical oscillators solve naturally.
Each mass position directly represents a component of the quantum wavefunction.
Spring connections encode interactions between quantum states and subsystems.
The stiffness matrix implements the target physics, ready for continuous readout.
Our 256-mass, 608-spring prototype reproduces 7-qubit lattice-gauge string breaking with extraordinary precision, using commodity components.
Become a design partner ↗prototype bill of materials
maximum deviation
comparable cloud campaign
room-temperature access
Our AI agent layer discovers new research, compiles Hamiltonians, generates spring-mass configurations, and verifies every candidate against exact quantum evolution.
An exact reference system for processor certification, algorithm validation, and lab research.
Affordable teaching hardware that makes the wavefunction visible, live, and hands-on.
Submit a quantum circuit and receive a verified, buildable oscillator-network design.
“We are not replacing quantum hardware. We are building the exact, accessible reference platform it needs.”
Founder & CEO · 15 years in quantum physics
LET'S BUILD THE REFERENCE LAYER