Quantum
services,
orchestrated.
DQS pairs a peer-to-peer circuit execution fabric with research tools for financial modelling, risk, options, and experimental molecular workflows.
- DiscoverScan the fabric. Find available services.
- ComposeBuild optimal workflows. Plan resource usage.
- ReserveSecure capacity. Establish commitments.
- ExecuteRun circuit fragments. Stream live results.
- ObserveInspect outcomes. Verify and iterate.
Every route is explicit.
Transparent orchestration from discovery to execution across the quantum fabric.
- Discover27 services foundAcross 6 providers
- ComposeWorkflow score 0.92Depth 5 · Cost 1.21
- Reserve3 services reservedTTL 120s
- ExecuteCircuit executed10,000 shots
- ObserveResult receivedFidelity 0.987
- CompleteTotal time 2.84sStatus success
From financial decisions to molecular discovery.
DQS brings its implemented research surfaces into one product story. Runnable workflows and experimental directions are labelled separately so each claim matches what the repository can support today.
One circuit can cross many providers without losing its intent.
The hard part is not choosing a gate. It is coordinating discovery, dependencies, capacity, retries, provenance, and results as one inspectable system.
Follow the execution storyRead the fabric before choosing a route.
The coordinator turns peer advertisements, health signals, protocols, and capacity into a live service registry.
27 services · 6 providers- 01Discover
- 02Compose
- 03Reserve
- 04Execute
- 05Observe
The workflow keeps its intent. The route can adapt.
Select a capability to see how the control plane changes the active route without hiding the decision from the operator.
See the network as it changes.
Peer advertisements publish service IDs, health, addresses, protocols, and capability summaries into a queryable registry.
A control plane, execution plane, and data trail in one stack.
Open a layer to follow the real implementation boundary from browser interface to distributed worker and back.
Workload inputs
OpenQASM circuits and domain requests enter through a typed REST boundary.
Next.js · FastAPIBuilt to test orchestration ideas across real code paths.
DQS is deliberately transparent about what runs today, what is under active development, and what remains a research direction.
Circuit orchestration
Normalize OpenQASM, preserve dependencies, rank service candidates, reserve capacity, and inspect every execution attempt.
Applied quantum workflows
Place application-specific finance, risk, options, molecular, and agent research tools beside an inspectable peer-to-peer circuit fabric.
Verifiable research
Keep plans, assignments, fallbacks, telemetry, and reproducible result artifacts attached to the workflow that produced them.
What runs now. What opens next.
Orchestration and portfolio benchmark
Circuit orchestration, a QAOA portfolio benchmark, simulated equity and credit risk, options comparisons, and operator diagnostics.
Discovery and collaboration
Experimental molecular screening, AI-assisted proposal workflows, content-addressed circuit sharing, durable artifacts, and richer team controls.
Open node and service network
Bring-your-own-node participation, hardware adapters, federated discovery, and torrent-native scientific service packages.
Hydra resilience
Multi-coordinator operation, workflow rehydration, topology repair, service regeneration, and self-healing execution policies.
Move from a real problem to an inspectable result.
Begin with financial modelling, risk, options, experimental molecular workflows, or distributed circuits—then inspect the inputs, diagnostics, and execution state the system records.