BEAMLINE SPECIFICATIONS

Additional Beamline specific information:

08ID-1 (Expected performance at 250 mA)

Source Small-gap in-vacuum undulator (SGU)
Energy Range 6.5 - 18 keV (1.9 - 0.69 Å)
Energy Bandwidth (ΔE/E) Si(111) 1.5 x 10-4
Flux (photons/s) on the sample @ 12keV >1012
Focal Size (FWHM) @ 12 keV 170μm (H) x 50 µm (V)
Flux density [ph/s/mm2] @ 12 keV >1014
Beam crossfire at the sample (H x V) @ 12 keV (FWHM) 0.9 mrad x 0.2 mrad

08B1 (Phase 2 Beamline)
(Expected performance at 250 mA)

Source Bending Magnet
Energy Range 5.0 - 25.0 keV ( - Å)
Energy Bandwidth (ΔE/E) Si(111) 1.4x 10-4
Flux (photons/s) on the sample @ 12keV >1011
Focal Size (FWHM) @ 12 keV 230μm (H) x 220μm (V)
Flux density [ph/s/mm2] @ 12 keV >1012
Beam crossfire at the sample (H x V) @ 12 keV (FWHM) 1.7 mrad  x 0.2 mrad

SOURCE POINT SIZES

Source electron beam sizes and divergences at dipole magnets
(Tunex=10.22, Tuney=4.32, dispersion in straights=0.25, 0.2% coupling).
 

Beamline source

Horizontal

Vertical

  σx[mm] σx` [mrad] σy [mm] σy` [mrad]
BM1 0.120 0.181 0.030 0.005
Straight/ID 0.438 0.041 0.008 0.003

BRILLIANCE

Properties of the In Vacuum Undulator (08ID-1)

Undulator Type

Hybrid

Undulator Layout

Asymmetric

Period Length

20 mm

Minimum Gap

5 mm

Maximum Gap

35 mm

Number of Full Size Poles

157

Total Number of Poles

159

Total Length of Magnet Assemblies

1607 mm

Magnetic Material:

 

Permanent Magnet Blocks

Sm2Co17

Minimum Remanence

1.03 T

Minimum Intrinsic Coercivity at 20oC

20 kOe

Temperature Coefficient, Intr. Coercivity

-0.19 %/oC

   
At Minimum Gap:  

Peak Flux Density 

1.066 T

Effective Flux Density

0.981 T

Effective k

1.83

Higher Order Contributions

8.4%

Photon Energy, n = 1

1.49 keV

Maximum Magnetic Load

9.5 kN

   

Poles: Vanadium Permendur

 

Saturation Flux Density

2.4 T

Total Power: 4.0 kW

Disclaimer: This page gives technical information on the anticipated performance of a suite of beamlines that are planned for the Canadian Light Source. It is a work in progress; unless specifically indicated otherwise, information presented in these pages is subject to change as the designs of the various beamlines evolve and as new beamlines are approved and enter the design phase.