Skip to content

ID32

soft X-ray resonant inelastic scattering (RIXS) and X-ray magnetic dichroism (XMCD) on a ~5 m spectrometer arm + 9 T magnet; CORA's first ESRF deployment and first BLISS control plane.

Property Value
Facility ESRF (BLISS / Beacon / Tango / IcePAP)
Sector ID32
Source insertion-device
Modelled reverse-engineered, full coverage

Generated from the descriptor

This page is generated from the descriptor at deployments/id32/beamline.yaml. Edit the descriptor, not this page.

The device handles are read from the facility's public controls configuration and verified against it; vendor parts, energies, and physical positions are not in it and are carried confirm until beamline staff verify them. Source: gitlab.esrf.fr id32/beamline_configuration.

Enclosures

Enclosure Role Facility Permit signal
id32-optics optics-hutch esrf confirm: PSS permit leaf not in the BLISS config; the shared soft X-ray optics zone, hutch grouping is ENC-1 (PSS-1)
id32-rixs experiment-hutch esrf confirm: PSS permit leaf unknown; the RIXS spectrometer endstation, ENC-1 (PSS-1)
id32-xmcd experiment-hutch esrf confirm: PSS permit leaf unknown; the XMCD high-field-magnet endstation, ENC-1 (PSS-1)

The beamline

ESRF soft X-ray RIXS on a ~5 m dispersive spectrometer arm plus a 9 T XMCD / XES endstation; CORA's first BLISS / Beacon / Tango / IcePAP control plane, bringing three loose families to a rule-of-three.

  • 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