Spectral Spacetime

Space is where nodes are. Time is how fast they tick. Both are frequency — and frequency is color.

Nodes 1800
Harmonic octaves 6
Flow rate 1.0×
Frequency band all
low f
high f
Matter from the vacuum
Temperature 2.7 K
Freeze-out logistic
QuCalc — read & create
Each line is a ZFA closure. Capture reads the live display as QuCalc; Replace clears first, Inject adds.

Drag orbit · Scroll zoom · Click a particle or atom to identify it

Frequency band — log sliders over rest frequency f = m/me (E = m = 1/R). The visible spectrum is stretched across the band (band-low → red, band-high → violet); closures outside the band dim, and Capture takes only the in-band closures on screen.

Temperature is the vacuum's energy — from absolute zero (a dead vacuum), through the CMB (2.7 K, default) faint red glow, up to the Planck temperature (~10³² K). Heating blues the photons and — once kT nears a rest energy — pairs erupt from the vacuum (e⁺e⁻ ≈10¹⁰ K, then μ⁺μ⁻, then p p̄ — every hadron is already a quantum black hole). Near the Planck top, micro black holes form (Compton = Schwarzschild) and Hawking-evaporate. Or inject a pair yourself. Bodies drift down the latency gradient (no forces), so a free p + e recombine into H (a photon flies off), two H bond into H₂, and H + H̄ annihilate — bound states are generated by the dynamics.