
The performance layer between your application and any QPU. Reads the machine's live calibration. Picks the winning qubits, route and schedule — every run.
96 preregistered comparisons against IQM's and IBM's own software — in the deep, complex regime where quantum computing actually earns its money. 96 wins. Below the capacity edge, vendor defaults hold their ground — that edge is exactly what we measure, predict and push. We add to the record in front of anyone who wants to watch.
Same hardware, same problem, deep regime: 78% more usable signal than the vendor's own stack.
At QAOA depth p=230, the vendor default is statistically indistinguishable from coin-flipping (0.500). ROX resolves the problem structure at ≥6.7σ — same chip, same day, same transpiler.
Deep circuit, 432 entangling gates, same chip, same day, IBM's own compiler at maximum settings. The deeper you go, the wider our lead.
Noise-extrapolated ground state of a frustrated 12-spin topology reproduced within measurement uncertainty, at 432 two-qubit gates of depth.
Depth-capability model fitted on one QPU, sealed before launch, then fired at a foreign chip: mean prediction error 1.63 points across the full ladder. Know your usable depth before you pay for a single shot.
We read it from data you already paid for. Axis-resolved channel anatomy, reproduced across independent runs to two hundredths — a measurement instrument, not a one-off. One chip thermally soft, its sibling anisotropy-dominated: we tell them apart from archives.
Artifact-controlled, 14σ. Free-arm half-life ~11 µs; protected, the witness is still climbing at 40 µs.
+9 points over unprotected at >50σ — and statistically level with the industry-standard defense on two chips, in two time regimes. Nothing beats it; nothing we tested beats us.
Every physically forbidden shot identified and discarded — +16 points of state quality mined from archived data. Zero additional QPU seconds.
Replicated on our stack in 81 seconds. Time-crystalline order held against deliberate detuning.
Our error bars come in 2–4.5× tighter — you buy fewer shots for the same answer. Quantum compute is the most expensive compute on Earth; we make it smaller.
Measured on IQM Garnet, IQM Emerald, IBM Heron. Every figure carries a task ID, independently verifiable on AWS & IBM.
96 preregistered comparisons against IQM's and IBM's own software — in the deep, complex regime where quantum computing actually earns its money. 96 wins. We add to the record in front of anyone who wants to watch.
Same hardware, same circuits: up to +78% effective fidelity, twice the state surviving deep circuits, ~3× less QPU time for equal confidence.
We forecast where computations collapse — including chips we've never touched (1.63 pts mean error, sealed before launch).
We read it from data you already paid for: chip diagnostics, acceptance testing, drift monitoring — zero machine seconds.
We mine +15–17 points of state quality retroactively from archived runs, at zero QPU cost.
Preregistered runs, official job IDs, forensic audits, raw counts you can recompute in five minutes. Skepticism is a feature here.
No competitor covers even two of these layers.
Every industry below runs on the same two problem engines: combinatorial optimization and ground-state search. Our record in exactly these two: 96 preregistered wins against the vendors' own stacks — at depths of up to ~6,900 entangling gates, where default paths return coin-flip noise.
Drug simulation is ground-state search. We compute ground-state energies on real hardware, exact to measurement uncertainty — the number every chemistry pipeline is built on.
The hardest materials problems are frustrated many-body systems. On those, more than twice the quantum state survives with us — and our lead grows the deeper you go.
Portfolio, risk, allocation: optimization and ground-state search, back to back. Signal at 13.5σ where the vendor path has already flatlined.
Routing and scheduling at industrial depth: 6,900 gates in, still resolving structure at ≥6.7σ — thousands of gates past the point where the default gave up. And 4 billion operations orchestrated through a single job, zero failures.
Certified quantum entropy: provably true randomness, yield per machine-hour maximized, with a forensic audit trail regulators can cite.
Every other tool optimizes in hindsight. ROX_Q runs on a proprietary capacity theory that forecasts — before submission — where a circuit will collapse, how deep it can go, and what today's machine can carry. 3 of 3 layer-accurate collapse predictions on commercial hardware. Our scaling advantage on the 54-qubit chip: predicted in writing, then proven at 11.4σ.
> rox forecast --circuit portfolio_v3 --backend iqm_emerald ✓ predicted collapse: layer 122 ✓ recommended depth: ≤ 96 ✓ expected advantage vs. default path: +5.4 pts > submit? [Y/n] ▊
Stop paying to find out. Know first. Then run.
Our orchestration pipeline holds industrial workloads that break standard submission paths.
Orchestration stress-bench · 120 qubits · 327s QPU
Cut them to a third — or run 3× more experiments on the same budget. Your circuits stay untouched. Onboarding pays for itself out of proven savings.
Your users get more results per QPU-minute, without you writing a line. Stacks with error-suppression tools. This layer has never lost.
Your machines, measured at their best. "ROX-ready" becomes a sales argument. Our advantage grows with your chip size — your roadmap is our multiplier.
More science per machine-hour. Court-proof audit reports your committees can cite. Results count both ways — that's why they're believed.
On-premise. Licensed. No data leaves the country. Capability you cannot import: a predictive theory of quantum execution, patent-filed.
The filed patent covers our full layer — selection, sequencing, active stabilization — including Floquet-engineered protection aimed at T1 itself: actively scheduled recovery windows at pulse level, driven by the capacity model.
The foundation is already measured: the patented pulse sequence beats unprotected operation by +9 points at >50σ — and holds the industry-standard defense to parity on two chips, in two time regimes. Nothing we tested beats it.
Pulse access: live today. Stage-2 campaign: written and scheduled.
Every number on this page was produced under preregistration — endpoints fixed in writing before submission, wins and losses both counted. Partner data room under NDA. Standing offer: recompute any figure with us, live. We insist.
Benchmarks, onboarding, partnerships — direct line, no layers.