Image:DiamondPoleFigure111.png

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Pole figure in [111] direction of the diamond lattice in which diamond, silicon and germanium usually crystallize. The spots in the stereographic projection show the orientation of lattice planes with the 111 in the center. Only poles for a non-forbidden Bragg reflection are shown between Miller indices -10 <= (h,k,l) <= 10. The green spots contain Miller indices up to 3, for example 111, 113, 133, 200 etc in its fundamental order. Red are those raising to 5, ex. 115, 135, 335 etc, while blue are all remaining until 10, such as 119, 779, 10.10.00 etc.

Author: Klaus-Dieter Liss (kdliss)
Date: 17. 9. 2005
Origin: own work
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I, the copyright holder of this work, hereby publish it under the following licenses:
GNU head Permission is granted to copy, distribute and/or modify this document under the terms of the GNU Free Documentation license, Version 1.2 or any later version published by the Free Software Foundation; with no Invariant Sections, no Front-Cover Texts, and no Back-Cover Texts. A copy of the license is included in the section entitled "GNU Free Documentation license".

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current22:48, 4 August 2006677×677 (14 KB)Kdliss (Pole figure in [111] direction of the diamond lattice in which diamond, silicon and germanium usually crystallize. stereographic projection show the orientation )
22:46, 4 August 2006677×677 (14 KB)Kdliss (Pole figure in [111] direction of the diamond lattice in which diamond, silicon and germanium usually crystallize. stereographic projection show the orientation )
22:42, 4 August 2006677×677 (14 KB)Kdliss (Poloe figures in [111] direction of the diamond lattice in which diamond, silicon and germanium usually crystallize. stereographic projection show the orientatio)
22:39, 4 August 2006677×677 (14 KB)Kdliss (Poloe figures in [111] direction of the diamond lattice in which diamond, silicon and germanium usually crystallize. stereographic projection show the orientatio)
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