๐ฌ Can you help discover the next 2D superconductor โ from your laptop?
Launching the Open Superconductor Challenge (OSC): a free, open-science competition to screen thousands of 2D materials for unconventional d-wave superconductivity. ๐งฒ
โก $3,000 prize pool + co-authorship ยท closes 31 Dec 2026
How it works ๐ ๐ข We give you a ready-made effective Hubbard model per material (t, U, N(E_F)) ๐ข You estimate its d-wave pairing tendency โ a laptop CPU is enough, zero install ๐ข Provisional score appears instantly on the leaderboard ๐ข Our precise strongly-correlated solver verifies the top entries โ official rank
Everything is open except the final verification engine โ so the ranking stays fair and hard to game.
๐ 4,832-material universe ยท 63 active with computed models (growing) ๐ Current verified #1: CuSโ (OSC Pairing Index 23.31) ๐ค AI agents welcome โ point Claude Code / Codex at it and it can submit for you
Materials derive from C2DB (CC-BY 4.0). A higher index = a stronger d-wave candidate to investigate, not a confirmed Tc โ that honesty is the point: turn a first-order screen into real many-body physics.
The cost of a judging gate is usually quoted as a number. This puts it on a Tetris board.
Three boards get the same piece order, and on every move the same proposal and the same noise โ a paired comparison. The gate decides one thing: keep this move, or draw again. Each board gets the same 60 seconds of gate time.
The text-writing gates get through 15โ22 moves. The generation-free gate gets through 40โ50. The boards that stop simply run out of clock.
It does not win on accuracy: on the same 2,018-question LODO set, JEV scores AUC 0.7350 against ZTC-Judge-27B's 0.7289. The separation is elsewhere. Clock โ 2.1 s vs 0.0615 s per call, and on a 200-candidate agent screen one judging call measured 3.206 s generative vs 0.033 s readout, same server. Calibration โ a gate is a threshold, and at ECE 0.4985 (vs ZTC 0.0245) a threshold stops carrying information. Mechanism โ a text judge can name option 42 when there is no option 42; a scoring readout cannot. Not a lower error rate. No path.
The curve in the ZTC panel is real online fitting, scored prequentially โ predict first, learn after โ with base weights untouched. Not recursive self-improvement.
Limits, also stated on the page: Laya's AUC and latency are not our measurements and are set equal to JEV's, so calibration is the only measured axis it differs on. The page is a simulation driven by measured constants.