We lower your decoder's logical error rate by correcting the error model it reads, before it decodes, without replacing the decoder. Validated on real neutral-atom and superconducting hardware data, with a built-in guard that never makes it worse.
Decoding performance is in private pilot. The runtime-efficiency and result-assurance tools below you can run today: fewer shots and evaluations, plus drift, trust, and signed provenance on every run. Interactive demos replay calibrated hardware noise models from IBM Fez, Torino, Marrakesh, Rigetti Ankaa-3, IonQ Aria, Quantinuum H2. Hardware-validated bar: n >= 5 reps on real superconducting QPUs (IBM Heron, Rigetti Ankaa), methodology file on record. See the audit links per demo.
9
Interactive demos
201K
Per-shot labelled records
4
IBM Heron backends
2
Vendors
5 core gates validated on real quantum processors, IBM Fez, Torino, Marrakesh, Kingston + Rigetti Ankaa-3. 201K fully-labelled per-shot records across 4 IBM Heron backends + Rigetti single-round stub.
Last validated: April 2026 on IBM Heron (Fez, Torino, Marrakesh, Kingston) + Rigetti Ankaa-3
Run your quantum workload as normal, QEC, VQE, QAOA, tomography, or any circuit, and point us at the decoder you already run.
The adaptor corrects the error model your decoder reads. The run-today tools watch the run, abort shots heading for failure, and prune cost.
Your decoder reports a lower logical error rate, and you stop paying for shots that will not make the paper. 30 to 70% less QPU cost on the optimize tools.