Bounded quantum model
Read the result, replay the run
Run a circuit to compare basis probabilities and sampled counts.
q0 is the least significant bit. Noise is applied independently after all gates, before measurement. The sampled draws are saved with every exported run.
Admitted Bangel energy calculation
Run twin to execute Elsa → JP → Joanna.
This executes the recovered compiler and runtime with driver and DC conversion losses. Positive values are external electrical demand for a one-second warm reference scenario. Joules use the native W·s type; whole-system energy remains unknown.
Execution receipts
No execution yet.
Recovered Mermaid cooling work
Warm-stage heat and power
The preserved fixture uses α=0.05 V/K, R=2 Ω, K=0.5 W/K and a 250–450 K envelope. “Verified” identifies the fixture's modeled calibration state. It is not a measured Mermaid device calibration. The new RC model uses explicit illustrative heat capacity 100 J/K and thermal resistance 2 K/W.
Thermal and electrical boundaries
Thermal receipt and conservation
Standard inventory
Source, extensions and proposed roles
Each entry carries its own evidence. Inventory inclusion does not establish an executable module or a physical processor.
Subsystem receipt
| Processor / role | Profile | Classification | Evidence |
|---|
Measured host / modeled system
Test the speed and energy objectives
This diagnostic tests a 15% cache-kernel threshold. The approved mixed-workload speed objective requires separate frozen-suite repetitions and remains unassessed. This paired comparison alternates compile-every-time and cached compilation; JP admission and receipt verification still run each time. Five warmups and 30 pairs per session, three sessions. Startup is reported separately.
Frozen modeled ablations
Chronological forecast evaluation
Raw benchmark samples and environment
Engineering proposal
Two thermal stages, one typed interface
Classical control and thermal orchestration
Bangel compiler / admission / runtime → typed job receipts. Predictive, neural, recall and decision are bounded advisory modules. Peltier pumps heat to a separate rejection sink; Seebeck harvest is accounted once.
Heat leak: unknown
Semiconductor spin qubit concept
Two initial silicon MOS electron spin quantum dots; schematic growth to eight modeled qubits. Gate geometry, device process, control waveforms, T1/T2, gate timing and refrigeration capacity need device data.
This is a logical engineering blueprint and software twin. It is not a fabrication mask, validated cryogenic design, or proof of quantum advantage.
Pinned and freshly checked
Trace every claim to evidence
Recovered revision 229548f13a4856455b3d30d408cf845fb5b557fc. Original records remain unchanged. Browser adapter and new simulation extensions are qualified separately from native source. Failed checks and HOLDs are retained.
Fresh qualification record
Runtime provenance and licenses
Browser runtime: Pyodide 0.29.5, CPython 3.13.2, local SQLite package. Core archive SHA256 ab08aafc11a3c9a0fe73825eb2cec78bda9464348dd17414e7ec0132ef3451e8. Host timing reflects this browser and computer.
Third-party notices · Recovered thermoelectric work
Runs stay in your current browser session; preferences are saved on this device. Export receipts to keep them. No account or physical control connection is used.