1 | #if !defined(hollow_cylinder_h) |
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2 | #define hollow_cylinder_h |
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3 | |
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4 | /** |
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5 | * Structure definition for hollow cylinder parameters |
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6 | */ |
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7 | //[PYTHONCLASS] = HollowCylinderModel |
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8 | //[DISP_PARAMS] = core_radius, radius, length, axis_theta, axis_phi |
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9 | //[DESCRIPTION] = <text></text> |
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10 | //[FIXED]= <text> axis_phi.width; axis_theta.width; length.width;core_radius.width; radius</text> |
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11 | //[ORIENTATION_PARAMS]= axis_phi; axis_theta;axis_phi.width; axis_theta.width |
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12 | |
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13 | |
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14 | typedef struct { |
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15 | /// Scale factor |
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16 | // [DEFAULT]=scale=1.0 |
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17 | double scale; |
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18 | |
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19 | /// Core radius [A] |
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20 | // [DEFAULT]=core_radius=20.0 [A] |
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21 | double core_radius; |
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22 | |
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23 | /// Shell radius [A] |
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24 | // [DEFAULT]=radius=30.0 [A] |
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25 | double radius; |
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26 | |
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27 | /// Hollow cylinder length [A] |
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28 | // [DEFAULT]=length=400.0 [A] |
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29 | double length; |
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30 | |
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31 | /// Contrast [1/A²] |
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32 | // [DEFAULT]=contrast=5.3e-6 [1/A²] |
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33 | double contrast; |
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34 | |
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35 | /// Incoherent Background [1/cm] |
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36 | // [DEFAULT]=background=0.01 [1/cm] |
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37 | double background; |
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38 | |
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39 | /// Orientation of the long axis of the hollow cylinder w/respect incoming beam [rad] |
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40 | // [DEFAULT]=axis_theta=1.57 [rad] |
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41 | double axis_theta; |
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42 | |
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43 | /// Orientation of the long axis of the hollow cylinder in the plane of the detector [rad] |
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44 | // [DEFAULT]=axis_phi=0.0 [rad] |
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45 | double axis_phi; |
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46 | |
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47 | } HollowCylinderParameters; |
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48 | |
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49 | |
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50 | |
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51 | /// 1D scattering function |
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52 | double hollow_cylinder_analytical_1D(HollowCylinderParameters *pars, double q); |
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53 | |
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54 | /// 2D scattering function |
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55 | double hollow_cylinder_analytical_2D(HollowCylinderParameters *pars, double q, double phi); |
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56 | double hollow_cylinder_analytical_2DXY(HollowCylinderParameters *pars, double qx, double qy); |
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57 | double hollow_cylinder_analytical_2D_scaled(HollowCylinderParameters *pars, double q, double q_x, double q_y); |
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58 | |
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59 | #endif |
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