Subatomic Electronics
A research architecture for observing and influencing electronic states at extreme spatial and temporal resolution while maintaining ordinary engineering discipline: models, controls, calibration, uncertainty, isolation, and repeatability.
From electron dynamics to testable device hypotheses
State preparation
Controlled starting conditions, materials, temperature, vacuum, surface condition, and reference-state definition.
Ultrafast control
Phase-stable fields and pulses treated as bounded experiment inputs with independent monitoring.
Local sensing
Tunneling, spectroscopy, imaging, and correlated measurements used to infer state changes with stated uncertainty.
Device hypotheses
Switching, memory, routing, coupling, and logic concepts remain hypotheses until repeatable devices and error budgets exist.
Environmental isolation
Vibration, thermal drift, electromagnetic interference, contamination, and instrument back-action are controlled.
Replication
Independent samples, instruments, operators, and facilities are needed before a mechanism enters engineering baseline.