Quantum computing, accessible to everyone.

Submit circuits to real quantum hardware or fast simulators, let an AI agent turn your problem into an algorithm, and pay per job on Solana in SOL, USDC or $QFORGE.

IBM Quantum and Amazon Braket backends Settled on Solana Signed job receipts
Heating ingotQubits forged 0
Workloads

One order book for every quantum computer.

Pick a backend, set your shots and get a price before you commit. Workloads that won't benefit from real hardware run on simulators, and the quote tells you which is which.

Job quote

Pay with
Simulator$0.02

Estimated price. The provider confirms the final quote before you sign, and it settles in your chosen token at execution time.

Say the problem. Get the circuit.

The QFORGE agent maps plain-language problems to a known quantum algorithm, sizes the circuit and recommends hardware or a simulator. AI agents can call the same endpoint and pay for the job themselves.

Your algorithm, recommended backend, circuit diagram and OpenQASM will appear here.

From prompt to proof in four moves.

  1. SubmitA circuit, or a sentence the agent turns into one.
  2. RouteThe marketplace matches qubits, fidelity, queue and price.
  3. ExecuteShots run on hardware or a simulator; you pay per compute.
  4. ProveA signed receipt lands on Solana with the result hash.

Bell state, 2 qubits

OPENQASM 3.0;
qubit[2] q; bit[2] c;
h q[0];
cx q[0], q[1];
c = measure q;

Routing

State-vector simulatorno queue · cheapest
IBM Quantumsuperconducting
IonQ via Brakettrapped ion
Rigetti via Braketsuperconducting

For a 2-qubit Bell state a simulator gives the exact answer. Pick hardware when you want to see real device noise.

Results, 1,000 shots on hardware

49%
2%
2%
47%
|00⟩|01⟩|10⟩|11⟩

An ideal Bell state gives only 00 and 11. The small 01 and 10 counts are typical device noise.

Receipt

Job
qf_7KX2…a91e
Backend
ibm_quantum
Circuit hash
sha256:4f1c…d3a0
Result hash
sha256:9be2…07c4
Paid
settled per job
Signed and anchored

Post a problem. Let the field compete.

Researchers escrow a reward, developers submit circuits, and the winning run is judged against a published, reproducible scoring script. These open at launch.

Receipts you can check yourself.

Every job publishes a signed receipt. Where the math allows it, results are independently checkable; where it doesn't, you still get a tamper-evident record of what ran, where and for how much.

  • Circuit hash commits to exactly what you submitted.
  • Result hash lets anyone re-hash the counts and compare.
  • Provider signature ties the run to a backend operator.

Receipt format

v1

Scroll to flip and verify

Re-verify in your browser

This recomputes SHA-256 over the published counts and compares it to the receipt.


            
Recomputed
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Usage turns the $QFORGE flywheel.

Marketplace fees fund buybacks and burns, and the rest pays for incentives and development. The token only works if real compute jobs keep coming.

Fee discountPay for jobs in $QFORGE and save on marketplace fees.
Bounty currencyEscrow research rewards in $QFORGE or stablecoins.
Agent-readyAutonomous agents hold a balance and buy compute by API.
$QFORGE

Forge a coin on quantum-seeded rails.

Launch an SPL token whose opening order is shuffled by a quantum random number job, so nobody can snipe block one. Route part of your creator fees into compute credits for your community.

Creator fee routing100%
$QFORGE buyback and burn gets the rest: 20%
CreatorCompute creditsBuyback and burn

Creates an SPL token with your wallet as mint authority and mints the full supply to you.

QFORGE
QCAT

Superposition Cat

Your coin preview updates as you type.

Price rises as the curve fills; this preview is relative, not a forecast.

Bring your first circuit to the forge

Describe a problem, get a circuit, run it on real hardware or a simulator, and pay only for the compute you use.

Start forging