Quantum simulation and validation
MoonLab
Quantum simulation that produces evidence, not theater.
MoonLab is Tsotchke's quantum simulation and validation platform for teams building quantum algorithms, hardware, and quantum-safe systems. It connects simulation cores, validation harnesses, control-plane policy, and extension surfaces so results can be inspected, reproduced, and governed.
Evidence and coverage
- Dense state-vector engine up to 32 qubits.
- Tensor networks, Clifford simulation, MPDO noise, QGT, TDVP, topology, VQE, QAOA, Grover, and QPE.
- Bell-verified QRNG and FIPS 203 ML-KEM 512/768/1024.
- Open-core extension surfaces for custom backends, vendor noise profiles, QEC decoders, and scheduler hooks.
- Tenant-aware control plane with HMAC auth, admission hooks, quotas, request context, and billing/audit hooks.
- Documented control-plane benchmark: 4674 req/sec Bell 2q HMAC, P99 1.92ms.
Enterprise surfaces
Simulation Core
Run state-vector, tensor-network, Clifford, and noisy MPDO simulations across algorithm and research workloads.
Hardware Validation
Compare device behavior against Bell circuits, noise profiles, scheduling assumptions, and reproducible validation records.
Quantum-Safe Systems
Exercise Bell-verified QRNG paths and FIPS 203 ML-KEM 512/768/1024 adoption plans with operational evidence.
QEC And Topology
Build QEC decoder workflows, topology experiments, TDVP routines, and QGT-backed analysis with custom extension hooks.
Enterprise Control Plane
Gate tenant-aware runs with HMAC auth, admission hooks, quotas, request context, and billing or audit integrations.
Ideal for
- Quantum algorithm teams that need reproducible simulation results.
- Hardware groups validating devices, noise profiles, and scheduler behavior.
- Security and platform teams planning quantum-safe infrastructure.