P405 – Mirror Unit SISSY_soft EMIL BESSY
Application
Mirror unit (M3) for soft X-ray synchrotron radiation
Year of delivery
2015
Installation site
EMIL soft X-ray beamline at BESSY, Helmholtz-Zentrum Berlin, Germany
This soft X-ray split mirror unit is part of the combined hard and soft X-ray EMIL beamlines at BESSY. It features an optimized design of the constant-strut-length hexapod mechanism used for the first Bestec hexapod (see project P377). The mirror splitting is realized by a vertical movement. The vacuum chamber accomodates not only the actual beam but also the passing hard X-ray and pink beams of the neighbouring branch.
Design Features
-
Constant-strut-length hexapod mechanism.
- Six degrees of freedom and selectable rotation center.
- Spectral range: 80 – 2000 eV.
- Optical elements: two focusing mirrors.
- Electrodes at mirrors surfaces for carbon contamination prevention.
-
Provisions for RF oxygen plasma cleaning of the optical surfaces.
- Four motorized OFHC aperture blades at the entrance flange.
- Permanently installed bakeout provisions.
- Adjustable support structure.
Performance Features
- High positioning resolution (minimum incremental motion).
- High stability and repeatability for all degrees of freedom.
- Minimized mounting induced deformations.
Outer Dimensions
Technical specifications and performance values
Chamber type
cylindrical, vertical axis
Main flanges
at the top
Material
1.4404 (C < 0.02%)
Base pressure
10-10 mbar range
Beam height
1420 mm
Number of mirrors
2
Surface shape
cylindrical
Mirror dimensions
220 mm x 40(25) mm x 40(8) mm
(T-profile)
Resolution (design value)
0.004 µm /motor fine step
(1/128, recommended)
0.005 µm /encoder count
Range
-30 mrad to 14 mrad
Resolution (measured value)
0.05 µrad
Repeatability
0.11 µrad (pitch)
0.10 µrad (roll)
Range
± 10 mrad
Resolution
0.05 µrad
Repeatability
0.07 µrad (pitch)
0.09 µrad (roll)
Range
± 8 mrad
Resolution
0.05 µrad
Range
± 15 mm
Range
± 5 mm
Material
OFHC
Stroke
25 mm, 50 mm
Resolution
10 µm /motor step
(full step at actuator)
0.11 µm /motor fine step at blade
(1/64, recommended)