Cold pressing of copper single crystals for a large-area doubly focusing monochromator
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Published:2004-05-11
Issue:3
Volume:37
Page:455-463
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ISSN:0021-8898
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Container-title:Journal of Applied Crystallography
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language:
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Short-container-title:J Appl Cryst
Author:
Mildner D. F. R.,Brand P. C.,Clem D. L.
Abstract
The design for a large-area doubly focusing neutron monochromator consists of a large number of small square copper single crystals mounted onto thin aluminium blades that both buckle and rotate independently. This avoids the need for large individual alignment mechanisms for each crystal that introduce unacceptably high levels of background. However, it does require that the crystals be oriented such that the diffracting crystallographic planes are parallel to the crystal face. Cold pressing broadens the natural narrow mosaic of the virgin crystal discs to increase the diffracted intensity. This introduces anisotropy into the crystal that determines its orientation in the final monochromator. The alignment procedure used for each crystal before cutting out the square tile in the correct orientation is described. A few crystals are characterized in detail by neutron diffraction at various stages of the operation, revealing the variation in the mosaic width and the angular position of the reciprocal-lattice vector as a function of the azimuthal angle by rotating the crystal about the normal to its face. The twofold symmetry of the mosaic width of the pressed crystal is modulated by the 2π periodicity introduced by the precession of the reciprocal-lattice vector around the crystal face normal. Satisfactorily aligned crystals have a variation in the angular position for diffraction within the allowed tolerance.
Publisher
International Union of Crystallography (IUCr)
Subject
General Biochemistry, Genetics and Molecular Biology
Cited by
2 articles.
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1. Double-Focusing Thermal Triple-Axis Spectrometer at the NCNR;Journal of Research of the National Institute of Standards and Technology;2012
2. Single-crystal diamond: a potential gem in neutron instrumentation;Journal of Applied Crystallography;2008-12-19