🧬 Time Crystal Emitter · Bill of Materials (BOM)

This BOM lists all components required to assemble the Time Crystal Emitter, the physical‑to‑resonance front‑end used for generating deterministic RTTcode packets.
All items below correspond directly to the emitter architecture described in Time_Crystal_Build_Notes.md.


📦 Bill of Materials#

Group Item Notes
Resonance Substrate Thin‑film ferromagnet sample RF‑driven magnon layer, MOKE compatible
Resonance Substrate Josephson junction array (LN2‑class) Accessible superconducting oscillator
Chamber Optical‑grade transparent housing Supports MOKE / laser access
Chamber Modular resonator mounts Swap ferromagnet / JJ modules
Chamber EM shielding (mu‑metal or equivalent) Reduces external interference
Actuation RF signal generator Drives ferromagnet / JJ oscillations
Actuation Piezo stack or actuator Mechanical / force channel
Actuation Small electromagnets / coils Local field modulation
Actuation Acoustic transducer (optional) Fluids/fields perturbation channel
Sensing MOKE optical setup (laser + detector) Thin‑film ferromagnet readout
Sensing SQUID magnetometer (or equivalent) Superconducting circuit readout
Control & Logging DAQ / oscilloscope / digitizer Time‑series capture
Control & Logging Host machine with RTT‑Inside stack Converts signals → RTTcode packets
Safety & Support Cryogenic handling gear (for JJ arrays) LN2 or appropriate cryogen
Safety & Support Laser safety eyewear & beam enclosures For MOKE / optical diagnostics
Safety & Support RF shielding and grounding hardware Prevents leakage and noise

🧪 RTT‑Inside Note#

Each logged experiment must include a corresponding RTTcode packet with:

  • experiment.experiment_id
  • seed
  • trial
  • provenance

These fields ensure deterministic replay, validator alignment, and compatibility with the broader AI Resonance Seed lattice.