In development

The generative discovery workspace.

Ask a question and watch the answer assemble — grounded in a cited corpus, computed on real physics, and entirely yours.

A cited, offline knowledge engine on a hybrid classical / quantum-simulation substrate.

What is Kexyn

Discovery that cites its sources — and computes its answers.

Most tools guess from a model's memory. Kexyn answers from a curated, citable corpus first — offline and reproducible — and when it doesn't know a subject, it goes and learns it. Underneath runs a bare-metal quantum-simulation engine, so an answer can be computed, not just recalled.

01 · ASK

You pose a question

Plain language. A quick fact, or the seed of a long investigation.

02 · GROUND

It answers from the corpus

Cited passages from a curated knowledge base — no silent web calls.

03 · LEARN

Unknown? It acquires

On a miss, Kexyn fetches the sources, extracts them, and learns the subject.

04 · COMPUTE

Physics, on demand

The quantum-simulation engine puts real computation under the reasoning.

A preview

A question becomes a scene.

Two ways to work, one engine. Ask, and the answer generates live as a scene of tiles. Or turn the question into a rig — a living graph of what you have, what's missing, and what can be derived.

Ask · cited search

The answer generates live.

Pose a question and Kexyn answers from its curated corpus — assembling text, formulas, and tables into a scene, each traceable to a source. If it doesn't know a subject, it acquires the sources and learns it.

"What sets the muon's lifetime?" · "Derive the Schwarzschild radius"
What sets the muon's lifetime?
answer
The muon decays through the weak force: μ⁻ → e⁻ ν̄ₑ ν_μ. Its mean lifetime is 2.2 µs — set by the weak coupling and the phase space available to the decay.
derivation · computed
τ = 192π³ℏ ⁄ (G_F² m_μ⁵)
values
mass105.7 MeV
mean lifetime2.197 µs
main channelμ → e ν ν̄
_source: Particle Data Group_
Investigate · the rig

A question becomes a rig.

Turn a question into a project and Kexyn lays it out as a living graph: what you have, the gaps it needs to fill, and what it can derive. Wire in physics, run experiments, and keep the whole trail across sessions.

Sustained investigations, not one-off answers.
Question · Given an exotic particle, derive its cases
Characterizequestion Mass · lifetimehave · library Decay channelsgap · forge Cross-section σderive · blocked Case profileoutput
goal have gap derive output
Principles

Built differently on purpose.

Cited & offline

Every answer traces to a source in a curated corpus. No silent web calls.

Generative workspace

Answers assemble as a live canvas, not a chat log — reasoning you can see.

Classical + quantum-sim

A bare-metal statevector engine puts real physics under the reasoning layer.

Private & federated

Your knowledge stays yours — an identity-bound, federated fleet, not a data pool.

Where we are

Building in the open.

Kexyn is in active development. Here's the path — accounts and identity are the work in progress right now, ahead of a first early-access wave.

Knowledge engine
Working
Quantum-sim core
Working
Discovery workspace
Prototype
Accounts & identity
In progress
Early access
Next
Public launch
Later
Early access

Be there when Kexyn opens.

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