source: sasmodels/sasmodels/models/broad_peak.py @ 2f0c07d

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Last change on this file since 2f0c07d was 2f0c07d, checked in by Paul Kienzle <pkienzle@…>, 8 years ago

make figure names regular (geometry, angle_definition, angle_projection)

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Line 
1r"""
2This model calculates an empirical functional form for SAS data characterized
3by a broad scattering peak. Many SAS spectra are characterized by a broad peak
4even though they are from amorphous soft materials. For example, soft systems
5that show a SAS peak include copolymers, polyelectrolytes, multiphase systems,
6layered structures, etc.
7
8The d-spacing corresponding to the broad peak is a characteristic distance
9between the scattering inhomogeneities (such as in lamellar, cylindrical, or
10spherical morphologies, or for bicontinuous structures).
11
12Definition
13----------
14
15The scattering intensity $I(q)$ is calculated as
16
17.. math::
18
19    I(q) = \frac{A}{q^n} + \frac{C}{1 + (q\xi)^m} + B
20
21Here the peak position is related to the d-spacing as $q_o = 2\pi / d_o$.
22
23For 2D data the scattering intensity is calculated in the same way as 1D,
24where the $q$ vector is defined as
25
26.. math::
27
28    q = \sqrt{q_x^2 + q_y^2}
29
30
31References
32----------
33
34None.
35
36*2013/09/09 - Description reviewed by King, S and Parker, P.*
37
38"""
39
40from numpy import inf, sqrt
41
42name = "broad_peak"
43title = "Broad Lorentzian type peak on top of a power law decay"
44description = """\
45      I(q) = scale_p/pow(q,exponent)+scale_l/
46      (1.0 + pow((fabs(q-q_peak)*length_l),exponent_l) )+ background
47
48      List of default parameters:
49      porod_scale = Porod term scaling
50      porod_exp = Porod exponent
51      lorentz_scale = Lorentzian term scaling
52      lorentz_length = Lorentzian screening length [A]
53      peak_pos = peak location [1/A]
54      lorentz_exp = Lorentzian exponent
55      background = Incoherent background"""
56category = "shape-independent"
57
58# pylint: disable=bad-whitespace, line-too-long
59#             ["name", "units", default, [lower, upper], "type", "description"],
60parameters = [["porod_scale",    "",  1.0e-05, [-inf, inf], "", "Power law scale factor"],
61              ["porod_exp",      "",      3.0, [-inf, inf], "", "Exponent of power law"],
62              ["lorentz_scale",  "",     10.0, [-inf, inf], "", "Scale factor for broad Lorentzian peak"],
63              ["lorentz_length", "Ang",  50.0, [-inf, inf], "", "Lorentzian screening length"],
64              ["peak_pos",       "1/Ang", 0.1, [-inf, inf], "", "Peak position in q"],
65              ["lorentz_exp",    "",      2.0, [-inf, inf], "", "Exponent of Lorentz function"],
66             ]
67# pylint: enable=bad-whitespace, line-too-long
68
69def Iq(q,
70       porod_scale=1.0e-5,
71       porod_exp=3.0,
72       lorentz_scale=10.0,
73       lorentz_length=50.0,
74       peak_pos=0.1,
75       lorentz_exp=2.0):
76    """
77    :param q:              Input q-value
78    :param porod_scale:    Power law scale factor
79    :param porod_exp:      Exponent of power law
80    :param lorentz_scale:  Scale factor for broad Lorentzian peak
81    :param lorentz_length: Lorentzian screening length
82    :param peak_pos:       Peak position in q
83    :param lorentz_exp:    Exponent of Lorentz function
84    :return:               Calculated intensity
85    """
86
87    inten = (porod_scale / q ** porod_exp + lorentz_scale
88             / (1.0 + (abs(q - peak_pos) * lorentz_length) ** lorentz_exp))
89    return inten
90Iq.vectorized = True  # Iq accepts an array of q values
91
92def Iqxy(qx, qy, *args):
93    """
94    :param qx:   Input q_x-value
95    :param qy:   Input q_y-value
96    :param args: Remaining arguments
97    :return:     2D-Intensity
98    """
99    return Iq(sqrt(qx ** 2 + qy ** 2), *args)
100
101Iqxy.vectorized = True # Iqxy accepts an array of qx, qy values
102
103demo = dict(scale=1, background=0,
104            porod_scale=1.0e-05, porod_exp=3,
105            lorentz_scale=10, lorentz_length=50, peak_pos=0.1, lorentz_exp=2)
106
107oldname = "BroadPeakModel"
108oldpars = dict(porod_scale='scale_p', porod_exp='exponent_p',
109               lorentz_scale='scale_l', lorentz_length='length_l', peak_pos='q_peak',
110               lorentz_exp='exponent_l', scale=None)
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