ANULUM · independent research

Research & Technology

Physics · Neuroscience · Computation

Explore simulations, inspect the evidence and build on research across physics, neuroscience and computation.

40 registered projects · 34 public · 5 research groups

New here? Where to start → · Every registered project · About the institute

Repository inventories verified 30 September 2026

Theoretical Corpus · locked, in progress

The Anulum Framework

Unified theoretical corpus — physics, neuroscience, computation. Two readings, four languages. The complete map and the gentle path, side by side.

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Try the work, follow a question, or build your own reading collection.

Studios and workflows · Reactor research directions · Research atlas · Atlas Reactorum · in preparation · Software licensing · Inside the research · Case studies · Collaborate · Ask ANULUM

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KYMA · preparing an application · 2 October 2026

KYMA · abstractions for checkable AI

Can a learned relation become a reusable building block for reasoning and planning? Read the proposed scientific programme, its controlled tests and its limits.

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Read the full KYMA programme · Research reading guides

Participating · 2 October 2026

Fusion Equilibrium Challenge 2026

Follow our participation in plasma-equilibrium reconstruction and generalisation between tokamaks, with public methods and verified results as they become available.

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Plasma physics — the introduction to the reactor programme → One research group, twenty-five repositories: a solver laboratory, a shared kernel library and twenty device-family cores, each owning the configuration truth of one reactor family. The device cores are at computational-prototype maturity: closed-form device physics on declared operating points, no releases, no readiness claims.

Device families — twenty cores, computational-prototype maturity
Toroidal devices that hold the plasma on closed magnetic surfaces. Computational prototype
Mirror, magnetic-cusp and levitated-dipole configurations with open field lines. Computational prototype
Devices where the driving current itself confines the plasma. Computational prototype
Laser-, beam- and impact-driven compression of fusion targets. Computational prototype
Compression of magnetised targets by liners, plasma jets or FRC collisions. Computational prototype
Inertial-electrostatic wells, colliding beams and fusion–fission hybrids. Computational prototype

KYMA / DeepRAP · application preparing · funding not awarded

Support the next research programme

Explore the calls we are preparing for and ways to support our research through grants, sponsorship, investment and in-kind resources.

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