source: sasmodels/sasmodels/models/hollow_cylinder.c @ 6d5601c

core_shell_microgelsmagnetic_modelticket-1257-vesicle-productticket_1156ticket_1265_superballticket_822_more_unit_tests
Last change on this file since 6d5601c was 6d5601c, checked in by Paul Kienzle <pkienzle@…>, 6 years ago

use 4/3 pi constant when computing R_eff

  • Property mode set to 100644
File size: 3.1 KB
Line 
1//#define INVALID(v) (v.radius_core >= v.radius)
2
3static double
4shell_volume(double radius, double thickness, double length)
5{
6    return M_PI*length*(square(radius+thickness) - radius*radius);
7}
8
9static double
10form_volume(double radius, double thickness, double length)
11{
12    return M_PI*length*square(radius+thickness);
13}
14
15static double
16radius_from_volume(double radius, double thickness, double length)
17{
18    const double volume_outer_cyl = M_PI*square(radius + thickness)*length;
19    return cbrt(volume_outer_cyl/M_4PI_3);
20}
21
22static double
23radius_from_diagonal(double radius, double thickness, double length)
24{
25    return sqrt(square(radius + thickness) + 0.25*square(length));
26}
27
28static double
29effective_radius(int mode, double radius, double thickness, double length)
30{
31    switch (mode) {
32    case 1: // equivalent sphere
33        return radius_from_volume(radius, thickness, length);
34    case 2: // outer radius
35        return radius + thickness;
36    case 3: // half length
37        return 0.5*length;
38    case 4: // half outer min dimension
39        return (radius + thickness < 0.5*length ? radius + thickness : 0.5*length);
40    case 5: // half outer max dimension
41        return (radius + thickness > 0.5*length ? radius + thickness : 0.5*length);
42    case 6: // half outer diagonal
43        return radius_from_diagonal(radius,thickness,length);
44    }
45}
46
47static double
48_fq(double qab, double qc,
49    double radius, double thickness, double length)
50{
51    const double lam1 = sas_2J1x_x((radius+thickness)*qab);
52    const double lam2 = sas_2J1x_x(radius*qab);
53    const double gamma_sq = square(radius/(radius+thickness));
54    //Note: lim_{thickness -> 0} psi = sas_J0(radius*qab)
55    //Note: lim_{radius -> 0} psi = sas_2J1x_x(thickness*qab)
56    const double psi = (lam1 - gamma_sq*lam2)/(1.0 - gamma_sq);    //SRK 10/19/00
57    const double t2 = sas_sinx_x(0.5*length*qc);
58    return psi*t2;
59}
60
61static void
62Fq(double q, double *F1, double *F2, double radius, double thickness, double length,
63    double sld, double solvent_sld)
64{
65    const double lower = 0.0;
66    const double upper = 1.0;        //limits of numerical integral
67
68    double total_F1 = 0.0;            //initialize intergral
69    double total_F2 = 0.0;
70    for (int i=0;i<GAUSS_N;i++) {
71        const double cos_theta = 0.5*( GAUSS_Z[i] * (upper-lower) + lower + upper );
72        const double sin_theta = sqrt(1.0 - cos_theta*cos_theta);
73        const double form = _fq(q*sin_theta, q*cos_theta,
74                                radius, thickness, length);
75        total_F1 += GAUSS_W[i] * form;
76        total_F2 += GAUSS_W[i] * form * form;
77    }
78    total_F1 *= 0.5*(upper-lower);
79    total_F2 *= 0.5*(upper-lower);
80    const double s = (sld - solvent_sld) * shell_volume(radius, thickness, length);
81    *F1 = 1e-2 * s * total_F1;
82    *F2 = 1e-4 * s*s * total_F2;
83}
84
85
86static double
87Iqac(double qab, double qc,
88    double radius, double thickness, double length,
89    double sld, double solvent_sld)
90{
91    const double form = _fq(qab, qc, radius, thickness, length);
92    const double s = (sld - solvent_sld) * shell_volume(radius, thickness, length);
93    return 1.0e-4*square(s * form);
94}
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