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A NEW XUV BEAMLINE ON A MULTI-POLE WIGGLER IN THE SRS

M. Bowler, J. B. West, F. M. Quinn, D. M. P. Holland, B. Fell, P. A. Hatherly, I. Humphrey, W. R. Flavell and B. Hamilton
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M. Bowler: CLRC–Daresbury Laboratory, Warrington, WA4 4AD, UK
J. B. West: CLRC–Daresbury Laboratory, Warrington, WA4 4AD, UK
F. M. Quinn: CLRC–Daresbury Laboratory, Warrington, WA4 4AD, UK
D. M. P. Holland: CLRC–Daresbury Laboratory, Warrington, WA4 4AD, UK
B. Fell: CLRC–Daresbury Laboratory, Warrington, WA4 4AD, UK
P. A. Hatherly: Physics Department, Reading University, Reading, UK
I. Humphrey: Physics Department, UMIST, PO Box 88, Manchester, M60 1QD, UK
W. R. Flavell: Physics Department, UMIST, PO Box 88, Manchester, M60 1QD, UK
B. Hamilton: Physics Department, UMIST, PO Box 88, Manchester, M60 1QD, UK

Surface Review and Letters (SRL), 2002, vol. 09, issue 01, 577-581

Abstract: An XUV beamline has been constructed on the SRS synchrotron radiation source at Daresbury Laboratory, exploiting the output from a 2 T multi-pole wiggler. The beamline is based on an SGM design and produces photons in the energy range 40–350 eV. By taking a 7.5 mrad fan, a high flux of between1 × 1013and1 × 1014photons/s/300 mA ring current can be delivered, with a resolving power of around 1000. A Kirkpatrick–Baez mirror pair focuses the light onto the entrance slit of the monochromator. Using 10 · m entrance and exit slits, a resolving power of up to 10,000 can be achieved, with a flux of0.5–2 × 1011photons/s/300 mA. The calculated and measured performance is presented, with emphasis on the challenges associated with utilizing the XUV output of a high field MPW source. In addition, the scientific research programme is outlined.

Date: 2002
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DOI: 10.1142/S0218625X02002671

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