Conceptual

Parallel Neutral-Atom Rearrangement via Linear Phase Interpolation on a Spatial Light Modulator

How stochastically loaded single atoms in optical-tweezer arrays are sorted in parallel into arbitrary target geometries by updating a spatial-light-modulator hologram. How linearly interpolating each tweezer's position and optical phase between the start and end configurations enables flicker-free transport with holograms recomputed every few milliseconds, reaching per-cycle rearrangement success near 0.996.