source: sasview/sansmodels/src/sans/models/BEPolyelectrolyte.py @ 1aaa579

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Last change on this file since 1aaa579 was 27972c1d, checked in by Jae Cho <jhjcho@…>, 15 years ago

removed all non asc font in the units

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[829eee9]1#!/usr/bin/env python
2"""
3   
[3db3895]4    Provide F(x) = K*1/(4*pi*Lb*(alpha)^(2))*(q^(2)+k2)/(1+(r02)^(2))*(q^(2)+k2)\
[829eee9]5                       *(q^(2)-(12*h*C/b^(2)))
6    BEPolyelectrolyte as a BaseComponent model
7"""
8
9from sans.models.BaseComponent import BaseComponent
10import math
11
12class BEPolyelectrolyte(BaseComponent):
13   
14    """
15        Class that evaluates a BEPolyelectrolyte.
16       
[3db3895]17        F(x) = K*1/(4*pi*Lb*(alpha)^(2))*(q^(2)+k2)/(1+(r02)^(2))*(q^(2)+k2)\
[1ed3834]18                       *(q^(2)-(12*h*C/b^(2)))
[829eee9]19       
20        The model has Eight parameters:
21            K        =  Constrast factor of the polymer
22            Lb       =  Bjerrum length
23            H        =  virial parameter
24            B        =  monomer length
25            Cs       =  Concentration of monovalent salt
26            alpha    =  ionazation degree
27            C        = polymer molar concentration
28            bkd      = background
29    """
30       
31    def __init__(self):
32        """ Initialization """
33       
34        # Initialize BaseComponent first, then sphere
35        BaseComponent.__init__(self)
36       
37        ## Name of the model
38        self.name = "BEPolyelectrolyte"
[96672c0]39        self.description="""
[0824909]40        F(x) = K*1/(4*pi*Lb*(alpha)^(2))*(q^(2)+k^(2))/(1+(r02)^(2))
41            *(q^(2)+k^(2))*(q^(2)-(12*h*C/b^(2)))+bkd
[1ed3834]42               
[96672c0]43        The model has Eight parameters:
44        K        =  Constrast factor of the polymer
45        Lb       =  Bjerrum length
46        H        =  virial parameter
47        B        =  monomer length
48        Cs       =  Concentration of monovalent salt
49        alpha    =  ionazation degree
50        C        = polymer molar concentration
51        bkd      = background
52        """
[829eee9]53        ## Define parameters
54        self.params = {}
[3db3895]55        self.params['k']    = 10
56        self.params['lb']   = 7.1
57        self.params['h']    = 12
58        self.params['b']    = 10
59        self.params['cs']   = 0.0
[829eee9]60        self.params['alpha']= 0.05
[3db3895]61        self.params['c']    = 0.7
62        self.params['background']  = 0.0
[829eee9]63       
64
65        ## Parameter details [units, min, max]
66        self.details = {}
[0824909]67        self.details['k']    = ['[barns]', None, None]
[1ed3834]68        self.details['lb'] = ['[A]', None, None]
[27972c1d]69        self.details['h']   = ['[1/A^(2)]', None, None]
[1ed3834]70        self.details['b']    = ['[A]', None, None]
[0824909]71        self.details['cs'] = ['[mol/L]', None, None]
[829eee9]72        self.details['alpha']   = ['', None, None]
[0824909]73        self.details['c']    = ['[mol/L]', None, None]
74        self.details['background'] = ['[1/cm]', None, None]
[988130c6]75        #list of parameter that cannot be fitted
76        self.fixed= []
[829eee9]77               
78    def _BEPoly(self, x):
79        """
80            Evaluate 
[0824909]81            F(x) = K*1/(4*pi*Lb*(alpha)^(2))*(q^(2)+k2)/(1+(r02)^(2))
82                *(q^(2)+k2)*(q^(2)-(12*h*C/b^(2)))
[829eee9]83       
84            has 3 internal parameters :
85                   The inverse Debye Length: K2 = 4*pi*Lb*(2*Cs+alpha*C)
86                   r02 =1/alpha/Ca^(0.5)*(B/(48*pi*Lb)^(0.5))
[3db3895]87                   Ca = C*6.022136e-4
[829eee9]88        """
[3db3895]89        Ca = self.params['c'] * 6.022136e-4
[e45a565]90        #remove singulars
91        if self.params['alpha']<=0 or self.params['c']<=0 or self.params['b']==0 or self.params['lb']<=0:
92            return 0
93        else:
94           
95            K2 = 4.0 * math.pi * self.params['lb'] * (2*self.params['cs'] + \
96                     self.params['alpha'] * Ca)
97           
98            r02 = 1.0/self.params['alpha']/math.sqrt(Ca) * \
99                    (self.params['b']/math.sqrt((48.0*math.pi *self.params['lb'])))
100           
101            return self.params['k']/( 4.0 * math.pi * self.params['lb'] * self.params['alpha']**2 ) \
102                   * ( x**2 + K2 ) / ( 1.0 + r02**2 * ( x**2 + K2 ) \
103                        * (x**2 - ( 12.0 * self.params['h'] \
104                        * Ca/(self.params['b']**2) ))) \
105                        + self.params['background']
106           
[829eee9]107   
108    def run(self, x = 0.0):
109        """ Evaluate the model
[3db3895]110            @param x: input q-value (float or [float, float] as [r, theta])
[829eee9]111            @return: (debye value)
112        """
113        if x.__class__.__name__ == 'list':
[a55fac1]114            return self._BEPoly(x[0])
[829eee9]115        elif x.__class__.__name__ == 'tuple':
116            raise ValueError, "Tuples are not allowed as input to BaseComponent models"
117        else:
118            return self._BEPoly(x)
119   
120    def runXY(self, x = 0.0):
121        """ Evaluate the model
[3db3895]122            @param x: input q-value (float or [float, float] as [qx, qy])
[829eee9]123            @return: debye value
124        """
125        if x.__class__.__name__ == 'list':
[a55fac1]126            q = math.sqrt(x[0]**2 + x[1]**2)
127            return self._BEPoly(q)
[829eee9]128        elif x.__class__.__name__ == 'tuple':
129            raise ValueError, "Tuples are not allowed as input to BaseComponent models"
130        else:
[3db3895]131            return self._BEPoly(x)
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