MOGNO¶
cone-beam X-ray micro and nanotomography (phase-contrast, time-resolved 4D) across two stations; reuses the 2-BM / FXI tomography vocabulary, novelty is the Site and the fleet's first custom-Python (non-Bluesky) orchestration layer. A deliberately partial first cut.
| Property | Value |
|---|---|
| Facility | Sirius (EPICS + MXCuBE3) |
| Source | bending-magnet |
| Modelled | reverse-engineered, partial coverage |
Generated from the descriptor
This page is generated from the descriptor at deployments/mogno/beamline.yaml. Edit the descriptor, not this page.
The device families are inferred from public facility pages and papers; no control handles or vendor models are public, so every value is carried confirm until staff verify it. Source: lnls.cnpem.br facility page.
Enclosures¶
| Enclosure | Role | Facility | Permit signal |
|---|---|---|---|
mogno-nano |
experiment-hutch | sirius |
confirm: Sirius PSS permit signal TBD (PSS-1) |
mogno-micro |
experiment-hutch | sirius |
confirm: Sirius PSS permit signal TBD (PSS-1) |
The beamline¶
The fleet's first South American facility (Sirius): cone-beam X-ray nano- and micro-tomography across two endstations on a beamline-owned PyEpics stack, reusing the tomography spine.
- Source: the beam, produced and conditioned before the sample.
- Sample: the sample environment and its positioning.
- Detector: what records the beam after the sample.
- Controls: the control plane CORA's edge conducts over.
Not yet documented¶
This beamline has no Operations runbook and no live Experiment view, because CORA does not drive it yet. Both pages describe what an operator does with a running system, so writing them for a beamline CORA only models would be invention rather than documentation. The pilot at 2-BM carries both, and shows the shape they take once a deployment goes live.
More¶
- Techniques: what the beamline is for.
- Governance: who acts, and the trust shape that gates them.
- Open questions: the world-facts CORA needs staff to confirm.