[ Identification | Description | Input parameters | Links ]
MM_p
ComponentA single pore is simulated, which may have thick walls. The top and bottom are curved cylindrically azimuthally, and according to the Wolter I optic lengthwise (sagitally). A parameter specifies whether this is hyperbolic or parabolic. The azimuthal curvature is defined by the parameter radius. This refers to the center of the pore. I.e the top and bottom plates have radius of curvatureand respectively. To intersect the Wolter I plates we take advatage of the azimuthal symmetry and only consider the radial component of the photon's wavevector.
Name | Unit | Description | Default | |
pore_th | ||||
ring_nr | ||||
Z0 | m | Distance between optics centre plane and focal spot (essentially focal length). | ||
pore_height | m | Height of the pore. | ||
pore_width | ||||
chamfer_width | m | Width of side walls. | 0 | |
gap | m | Gap between the plate and the intersection plane with the hyperbolic section. | 0 | |
zdepth | 0 | |||
mirror_reflec | Data file containing reflectivities of the reflector surface (TOP). | "" | ||
bottom_reflec | Data file containing reflectivities of the bottom surface (BOTTOM). | "" | ||
side_reflec | Data file containing reflectivities of the side walls (LEFT and RIGHT). | "" | ||
size_file | "" | |||
non_specular_file | "" | |||
R_d | Default reflectivity value to use if no reflectivity file is given. Useful f.i. is one surface is reflecting and the others absorbing. | 1 | ||
waviness | 0 | |||
longw | 0 |
AT ( | , | , | ) RELATIVE | |||
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ROTATED ( | , | , | ) RELATIVE |
MM_p.comp
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[ Identification | Description | Input parameters | Links ]
Generated on 2025-03-31 19:18:19