source: sasview/sansmodels/src/sans/models/c_models/multishell.cpp @ 0f3fefe

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Last change on this file since 0f3fefe was 3d25331f, checked in by Gervaise Alina <gervyh@…>, 15 years ago

add more model 1d and 2 D

  • Property mode set to 100644
File size: 2.7 KB
Line 
1/**
2        This software was developed by the University of Tennessee as part of the
3        Distributed Data Analysis of Neutron Scattering Experiments (DANSE)
4        project funded by the US National Science Foundation.
5
6        If you use DANSE applications to do scientific research that leads to
7        publication, we ask that you acknowledge the use of the software with the
8        following sentence:
9
10        "This work benefited from DANSE software developed under NSF award DMR-0520547."
11
12        copyright 2008, University of Tennessee
13 */
14
15/**
16 * Scattering model classes
17 * The classes use the IGOR library found in
18 *   sansmodels/src/libigor
19 *
20 */
21
22#include <math.h>
23#include "models.hh"
24#include "parameters.hh"
25#include <stdio.h>
26using namespace std;
27
28extern "C" {
29        #include "libSphere.h"
30}
31
32MultiShellModel :: MultiShellModel() {
33        scale      = Parameter(1.0);
34        core_radius     = Parameter(60.0, true);
35        core_radius.set_min(0.0);
36        s_thickness  = Parameter(10.0);
37        w_thickness   = Parameter(10.0);
38        core_sld   = Parameter(6.4e-6);
39        shell_sld   = Parameter(4.0e-7);
40        n_pairs   = Parameter(2);
41        background = Parameter(0.0);
42}
43
44/**
45 * Function to evaluate 1D scattering function
46 * The NIST IGOR library is used for the actual calculation.
47 * @param q: q-value
48 * @return: function value
49 */
50double MultiShellModel :: operator()(double q) {
51        double dp[8];
52
53        // Fill parameter array for IGOR library
54        // Add the background after averaging
55        dp[0] = scale();
56        dp[1] = core_radius();
57        dp[2] = s_thickness();
58        dp[3] = w_thickness();
59        dp[4] = core_sld();
60        dp[5] = shell_sld();
61        dp[6] = n_pairs();
62        dp[7] = background();
63
64        // Get the dispersion points for the core radius
65        vector<WeightPoint> weights_core_radius;
66        core_radius.get_weights(weights_core_radius);
67
68        // Perform the computation, with all weight points
69        double sum = 0.0;
70        double norm = 0.0;
71
72        // Loop over radius weight points
73        for(int i=0; i< (int)weights_core_radius.size(); i++) {
74                dp[1] = weights_core_radius[i].value;
75
76                sum += weights_core_radius[i].weight
77                        * MultiShell(dp, q);
78                norm += weights_core_radius[i].weight;
79        }
80        return sum/norm + background();
81}
82
83/**
84 * Function to evaluate 2D scattering function
85 * @param q_x: value of Q along x
86 * @param q_y: value of Q along y
87 * @return: function value
88 */
89double MultiShellModel :: operator()(double qx, double qy) {
90        double q = sqrt(qx*qx + qy*qy);
91        return (*this).operator()(q);
92}
93
94/**
95 * Function to evaluate 2D scattering function
96 * @param pars: parameters of the multishell
97 * @param q: q-value
98 * @param phi: angle phi
99 * @return: function value
100 */
101double MultiShellModel :: evaluate_rphi(double q, double phi) {
102        return (*this).operator()(q);
103}
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