Project ticker / PHY
Cold atoms for machines that cannot drift.
PHY is a Kyoto-rooted public seed for a physics research vertical: MOT systems, quantum optics, robot calibration, and verified scientific collaboration.
Operating thesis
Physics becomes useful when it attacks a bottleneck no dashboard can fake.
PHY starts with serious laboratory language: magneto-optical traps, laser-cooled atoms, Bose-Einstein condensates, precision optics, vacuum systems, and careful measurement. The public story is not a broad quantum-computing claim. It is a practical question: where can physics become the reference layer for machines?
Formal university, company, and partner language should be added only after responsible approval. This page is a public seed for feedback and conversation.
Challenge map
Five themes for serious feedback.
PHY should earn trust by naming the difficult experiment, not by pretending the product is already finished.
Portable MOT package
Move from beautiful optical-table physics toward compact, repeatable cold-atom modules.
Cold-atom inertial reference
Study drift-aware references for drones, robots, tunnels, factories, and GPS-denied routes.
Robot calibration node
Use precision optics and metrology to help machines know when sensors or actuators drift.
AI experiment copilot
Support alignment logs, anomaly detection, parameter sweeps, and reproducibility under human review.
Verified scientist graph
Connect glocal scientists, labs, alumni executives, and industry with consent-first contribution records.
Feedback wanted
Who should react first?
Correct the MOT, BEC, laser-cooling, vacuum, and experimental framing.
Say whether the problems are thesis-sized and whether attribution feels fair.
Push on integration, failure modes, pilot criteria, cost, reliability, and timing.
Help translate deep physics into a company shape that keeps scientific trust.