Cymatics · field register
A vibrating plate scattered with sand sorts itself into figures — the sand settling wherever the plate holds still. This runs that idea backwards. Famous crop formations, and the ancient figures they echo, are read as sound: the geometry sets a fundamental and a stack of partials, and beside each one is the pattern that frequency would raise in sand on Ernst Chladni's plate. Or skip the field entirely and raise your own — by tone, or by voice.
Made by Iamra
Crop formations
Ancient figures · and your own
Playback
stopped · press Play
Sing low → big lazy loops. Go up top → fine filigree. Bright lines are nodes — where the sand settles. Both plates are driven-vibration models: every mode answers by how near it sits to resonance with each spectral peak of what's sounding, so the figures morph continuously with pitch and blend when several notes sound. The microphone is analysed in your browser and never recorded.
How the translation works
Raise your own. Pick Your own tone at the end of the strip. Then both plates stop following a figure and follow sound. The model is a driven plate's: each mode responds with amplitude 1 / (ωk² − ω² + i·2ζωkω), so whichever modes sit nearest each spectral peak carry the figure, and it morphs continuously as the pitch moves rather than jumping between pictures. Square-plate modes go as m² + n² (bending stiffness); the circular plate on the left uses Bessel-function modes with a free edge — rings and spokes, the crop-circle family — drawn as flattened crop. Drag the tone slider and play, or use the microphone and sing, bow, or play a record: several notes at once excite several figures, and you see their sum.
Dossier
—