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ENI6MA

Company

About ENI6MA

ENI6MA builds post-credential identity and authorization stacks: one-shot, request-bound proofs across digital systems and physical paper. A verifier observes allow or deny for that request alone under the reference architecture and claims registry.

What we build

For decades, digital systems have guarded reusable credentials (passwords, API keys, tokens, certificates) and treated possession of those secrets as lasting request authority. When the secret leaks, the capability travels with it until someone rotates or revokes it. That model does not scale to continuous breach, automated agents, and global API estates.

ENI6MA advances a different posture: one-shot, request-bound proofs of knowledge. Instead of proving that you hold a reusable credential for a while, each message proves that this action is authorized once. The proof is bound to the moment and the request. Capture of a spent proof does not mint lasting authority for a distinct request under the named model.

That shift is infrastructure for how companies, platforms, and agents authorize state-changing calls (APIs, cloud workloads, regulated industries, and AI toolchains) while coexisting with directories and transport PKI. Directories and certificates can stay; lasting request authority is what changes.

The product stack is documented under Products. The mathematics and observer model live under Technology. Guarantees assume the published reference architecture.

Authority expires at the end of each request.ShippingThe envelope binds method, endpoint_id, request hash, policy hash, tau, and nonce (one message, one use).Holds under the reference architecture

Mission → research → product

Mission to research roots to product stack

Mission

Make authority expire at the end of each request. PKI and tokens prove who may speak for a while; ENI6MA envelopes prove that this message may change the world once. Brand lock (immutable): Kill the key. Long live the proof.

Technology roots

The product sits on the Rosario–Wang line of work: information-theoretic observer models, holographic membership proofs, and post-quantum hybrid transport where configured. Start with Technology → Math for information-theoretic security versus computational hardness assumptions, or Technology overview. Public papers live under Research papers; deployment threat detail is gated.

Company

Founded by Dylan Rosario with advisors across cryptography, quantum science, and systems. See Team for the current roster (bios and photos welcome as they land). Intellectual property rights are reserved; see Intellectual property for the rights notice and licensing path.