Title of article :
Thermal bump removal of a crystal monochromator by designing an optimal shape
Author/Authors :
Micha، نويسنده , , Jean-Sébastien and Geaymond، نويسنده , , Olivier and Rieutord، نويسنده , , Francois، نويسنده ,
Pages :
6
From page :
155
To page :
160
Abstract :
Thermal bump arising at illuminated area of a water cooled monochromator crystal can be considerably reduced by designing an appropriate shape. Temperature and deformation have been simulated by finite element analysis (FEA) computations as a function of few geometrical parameters describing the shape of the crystal. As a result, a new crystal shape has been found which optimizes the throughput of a double crystals monochromator (DCM). Performances of the initial rectangular crystal and the new designed crystal predicted by FEA-based calculations and measured during experimental tests on a synchrotron beamline are reported. General design principles to overcome heat load issues and the objective function using the slope errors derived from FEA results are detailed. Current and foreseen performances at higher load are presented. Finally, advantages and limits of this simple-to-design and cheap solution are discussed.
Keywords :
X-ray optics , Monochromator , Slope errors , Thermal bump , Heat load , Finite element analysis , Crystal shape design , Indirect cooling
Journal title :
Astroparticle Physics
Record number :
2012940
Link To Document :
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