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Introducing Atlas.

Describe what you are stuck on. Atlas answers with your own literature on one side and the work you would never have searched on the other.

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Your field has a way of doing this. So does a field you have never read.Atlas gives you the difference.

Built for people who already know their own literature.

What is indexed

One index, whatever the record is.

A paper, a patent and a person’s history describe the same mechanism in three unrelated vocabularies. All of them come apart the same way before anything is stored.

Papers

Abstracts, and full text wherever we can reach it.

Indexing

Patents

Claims, and the prior art cited against them.

Planned

People

Authorship and employment history, including the names that appear in two fields at once. There are never many, and they are not usually looking.

Planned

News

Trade and industry reporting. Most of it reports a result and never says why it worked.

Under review

What is searched

Every source is decomposed along several domain-neutral axes before it is stored, and a query is matched against that decomposition rather than against the text.

What comes back

One result, in full.

Atlas returns a mechanism, the conditions it ran under, and the distance from those to yours. It does not tell you which to try. This is the result the screen above came back with, in full.

Outside your field · returned at rank 7Physical Review Letters, 1990

Mechanism

Small perturbations applied at the moment a cycle repeats hold an unstable orbit on a regular one, instead of forcing the whole system at once.

Demonstrated in

A gravitationally buckled magnetoelastic ribbon, driven at laboratory scale, at room temperature, with the timing computed from a measured return map.

Gap to your conditions

Yours is cardiac tissue in a living animal at body temperature, where the timing has to come from the interval between beats rather than from a return map you can measure in advance.

Evidence

Physical experiment, published 1990, with the effect observed rather than modelled.

No candidate is recommended for adoption.

That rank is a measurement. Given the problem above, as a cardiologist would have written it before anyone had connected it to physics, the engine returns this paper at rank 7. A leading AI search tool returns it at no rank at all, on this case or any other, although its index holds it. Two years after that paper, Garfinkel, Spano, Ditto and Weiss did the same thing in a rabbit heart. Spano and Ditto are on both papers. Two people carried it across by hand.

Using it

Four things it does that a search box cannot.

  • Write out what is not working

    Paste a paper, or describe what is failing in your own words.

  • Results split by distance

    Matches from your own field and matches from far outside it are shown apart.

  • Every claim traceable

    Each connection carries the passage it came from. Follow it back to the source paper in one click, or dismiss it.

  • Your problem stays yours

    For classified and proprietary work, only the abstract causal signature travels. The application, the context and the data stay behind your firewall.

Who uses it

Three ways to read the same index.

ReadsPapersPeople

WhoWhat they bring it

Chemicals and materials

R&D directors and program leads

A process that will not scale. A coating that fails in the field. A reaction that needs a catalyst nobody in the industry has.

Defense and the national labs

Program managers and technical directors

Requirements with no answer inside the domain, on work that cannot leave the network. Only the abstract signature is sent.

Pharmaceuticals

Discovery, and search and evaluation

A molecule that failed for reasons unrelated to its mechanism. A delivery problem another field solved decades ago.

Work is scoped one problem at a time.

Atlas is live. Bring it something you are stuck on.