[5378e40] | 1 | #!/usr/bin/env python |
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| 2 | # -*- coding: utf-8 -*- |
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| 3 | |
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[87985ca] | 4 | import sys |
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[5378e40] | 5 | from bumps.names import * |
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[346bc88] | 6 | from sasmodels.core import load_model |
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[7cf2cfd] | 7 | from sasmodels.bumps_model import Model, Experiment |
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| 8 | from sasmodels.data import load_data, set_beam_stop, set_top |
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[d772f5d] | 9 | |
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| 10 | """ IMPORT THE DATA USED """ |
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[7cf2cfd] | 11 | radial_data = load_data('DEC07267.DAT') |
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| 12 | set_beam_stop(radial_data, 0.00669, outer=0.025) |
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| 13 | set_top(radial_data, -.0185) |
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[87985ca] | 14 | |
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[7cf2cfd] | 15 | tan_data = load_data('DEC07266.DAT') |
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| 16 | set_beam_stop(tan_data, 0.00669, outer=0.025) |
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| 17 | set_top(tan_data, -.0185) |
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[87985ca] | 18 | #sas.set_half(tan_data, 'right') |
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| 19 | |
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| 20 | name = "ellipsoid" if len(sys.argv) < 2 else sys.argv[1] |
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| 21 | section = "radial" if len(sys.argv) < 3 else sys.argv[2] |
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[5d3d7b4] | 22 | if section not in ("radial","tangential","both"): |
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| 23 | raise ValueError("section %r should be 'radial', 'tangential' or 'both'" |
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| 24 | % section) |
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| 25 | data = radial_data if section != "tangential" else tan_data |
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| 26 | phi = 0 if section != "tangential" else 90 |
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[346bc88] | 27 | kernel = load_model(name, dtype="single") |
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[abb22f4] | 28 | cutoff = 1e-3 |
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[87985ca] | 29 | |
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| 30 | if name == "ellipsoid": |
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[7cf2cfd] | 31 | model = Model(kernel, |
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[346bc88] | 32 | scale=0.08, |
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| 33 | rpolar=15, requatorial=800, |
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| 34 | sld=.291, solvent_sld=7.105, |
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| 35 | background=0, |
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| 36 | theta=90, phi=phi, |
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| 37 | theta_pd=15, theta_pd_n=40, theta_pd_nsigma=3, |
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| 38 | rpolar_pd=0.222296, rpolar_pd_n=1, rpolar_pd_nsigma=0, |
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| 39 | requatorial_pd=.000128, requatorial_pd_n=1, requatorial_pd_nsigma=0, |
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| 40 | phi_pd=0, phi_pd_n=20, phi_pd_nsigma=3, |
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| 41 | ) |
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[8cdb9f1] | 42 | |
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| 43 | |
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| 44 | # SET THE FITTING PARAMETERS |
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[346bc88] | 45 | model.rpolar.range(15, 1000) |
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| 46 | model.requatorial.range(15, 1000) |
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| 47 | model.theta_pd.range(0, 360) |
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| 48 | model.background.range(0,1000) |
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[abb22f4] | 49 | model.scale.range(0, 10) |
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[8cdb9f1] | 50 | |
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| 51 | |
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[346bc88] | 52 | |
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[87985ca] | 53 | elif name == "lamellar": |
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[7cf2cfd] | 54 | model = Model(kernel, |
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[346bc88] | 55 | scale=0.08, |
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| 56 | thickness=19.2946, |
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| 57 | sld=5.38,sld_sol=7.105, |
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| 58 | background=0.003, |
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| 59 | thickness_pd= 0.37765, thickness_pd_n=10, thickness_pd_nsigma=3, |
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| 60 | ) |
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| 61 | |
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[8cdb9f1] | 62 | |
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| 63 | # SET THE FITTING PARAMETERS |
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[87985ca] | 64 | #model.thickness.range(0, 1000) |
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[8cdb9f1] | 65 | #model.scale.range(0, 1) |
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[87985ca] | 66 | #model.thickness_pd.range(0, 1000) |
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[8cdb9f1] | 67 | #model.background.range(0, 1000) |
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[87985ca] | 68 | model.sld.range(0, 1) |
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[8cdb9f1] | 69 | |
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| 70 | |
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[87985ca] | 71 | elif name == "cylinder": |
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[1726b21] | 72 | """ |
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| 73 | pars = dict(scale=0.0023, radius=92.5, length=798.3, |
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[87985ca] | 74 | sld=.29, solvent_sld=7.105, background=5, |
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[5d3d7b4] | 75 | theta=0, phi=phi, |
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[87985ca] | 76 | theta_pd=22.11, theta_pd_n=5, theta_pd_nsigma=3, |
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[1726b21] | 77 | radius_pd=.0084, radius_pd_n=10, radius_pd_nsigma=3, |
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| 78 | length_pd=0.493, length_pd_n=10, length_pd_nsigma=3, |
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[87985ca] | 79 | phi_pd=0, phi_pd_n=5, phi_pd_nsigma=3,) |
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[1726b21] | 80 | """ |
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| 81 | pars = dict( |
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[abb22f4] | 82 | scale=.01, background=35, |
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| 83 | sld=.291, solvent_sld=5.77, |
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| 84 | radius=250, length=178, |
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[5d3d7b4] | 85 | theta=90, phi=phi, |
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[abb22f4] | 86 | radius_pd=0.1, radius_pd_n=5, radius_pd_nsigma=3, |
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[1726b21] | 87 | length_pd=0.1,length_pd_n=5, length_pd_nsigma=3, |
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[abb22f4] | 88 | theta_pd=10, theta_pd_n=50, theta_pd_nsigma=3, |
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| 89 | phi_pd=0, phi_pd_n=10, phi_pd_nsigma=3) |
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[7cf2cfd] | 90 | model = Model(kernel, **pars) |
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[a42fec0] | 91 | |
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| 92 | # SET THE FITTING PARAMETERS |
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[1726b21] | 93 | model.radius.range(1, 500) |
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[4001d6e] | 94 | model.length.range(1, 5000) |
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[abb22f4] | 95 | model.theta.range(-90,100) |
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| 96 | model.theta_pd.range(0, 30) |
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| 97 | model.theta_pd_n = model.theta_pd + 5 |
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| 98 | model.radius_pd.range(0, 1) |
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| 99 | model.length_pd.range(0, 2) |
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| 100 | model.scale.range(0, 10) |
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| 101 | model.background.range(0, 100) |
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[a42fec0] | 102 | |
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| 103 | |
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[87985ca] | 104 | elif name == "core_shell_cylinder": |
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[7cf2cfd] | 105 | model = Model(kernel, |
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[346bc88] | 106 | scale= .031, radius=19.5, thickness=30, length=22, |
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| 107 | core_sld=7.105, shell_sld=.291, solvent_sld=7.105, |
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| 108 | background=0, theta=0, phi=phi, |
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| 109 | |
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| 110 | radius_pd=0.26, radius_pd_n=10, radius_pd_nsigma=3, |
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| 111 | length_pd=0.26, length_pd_n=10, length_pd_nsigma=3, |
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| 112 | thickness_pd=1, thickness_pd_n=1, thickness_pd_nsigma=1, |
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| 113 | theta_pd=1, theta_pd_n=10, theta_pd_nsigma=3, |
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| 114 | phi_pd=0.1, phi_pd_n=1, phi_pd_nsigma=1, |
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| 115 | ) |
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[a42fec0] | 116 | |
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| 117 | # SET THE FITTING PARAMETERS |
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| 118 | #model.radius.range(115, 1000) |
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| 119 | #model.length.range(0, 2500) |
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| 120 | #model.thickness.range(18, 38) |
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| 121 | #model.thickness_pd.range(0, 1) |
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[87985ca] | 122 | #model.phi.range(0, 90) |
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[a42fec0] | 123 | #model.radius_pd.range(0, 1) |
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| 124 | #model.length_pd.range(0, 1) |
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[87985ca] | 125 | #model.theta_pd.range(0, 360) |
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[a42fec0] | 126 | #model.background.range(0,5) |
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| 127 | model.scale.range(0, 1) |
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[09e15be] | 128 | |
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[8faffcd] | 129 | |
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[ca6c007] | 130 | |
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[87985ca] | 131 | elif name == "capped_cylinder": |
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[7cf2cfd] | 132 | model = Model(kernel, |
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[346bc88] | 133 | scale=.08, radius=20, cap_radius=40, length=400, |
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| 134 | sld_capcyl=1, sld_solv=6.3, |
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| 135 | background=0, theta=0, phi=phi, |
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| 136 | radius_pd=.1, radius_pd_n=5, radius_pd_nsigma=3, |
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| 137 | cap_radius_pd=.1, cap_radius_pd_n=5, cap_radius_pd_nsigma=3, |
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| 138 | length_pd=.1, length_pd_n=1, length_pd_nsigma=0, |
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| 139 | theta_pd=.1, theta_pd_n=1, theta_pd_nsigma=0, |
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| 140 | phi_pd=.1, phi_pd_n=1, phi_pd_nsigma=0, |
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| 141 | ) |
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[8cdb9f1] | 142 | |
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| 143 | model.scale.range(0, 1) |
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| 144 | |
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| 145 | |
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[87985ca] | 146 | elif name == "triaxial_ellipsoid": |
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[7cf2cfd] | 147 | model = Model(kernel, |
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[346bc88] | 148 | scale=0.08, req_minor=15, req_major=20, rpolar=500, |
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| 149 | sldEll=7.105, solvent_sld=.291, |
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| 150 | background=5, theta=0, phi=phi, psi=0, |
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| 151 | theta_pd=20, theta_pd_n=40, theta_pd_nsigma=3, |
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| 152 | phi_pd=.1, phi_pd_n=1, phi_pd_nsigma=0, |
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| 153 | psi_pd=30, psi_pd_n=1, psi_pd_nsigma=0, |
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| 154 | req_minor_pd=.1, req_minor_pd_n=1, req_minor_pd_nsigma=0, |
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| 155 | req_major_pd=.1, req_major_pd_n=1, req_major_pd_nsigma=0, |
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| 156 | rpolar_pd=.1, rpolar_pd_n=1, rpolar_pd_nsigma=0, |
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| 157 | ) |
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[8cdb9f1] | 158 | |
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| 159 | # SET THE FITTING PARAMETERS |
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[87985ca] | 160 | model.req_minor.range(15, 1000) |
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| 161 | model.req_major.range(15, 1000) |
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| 162 | #model.rpolar.range(15, 1000) |
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[8cdb9f1] | 163 | #model.background.range(0,1000) |
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| 164 | #model.theta_pd.range(0, 360) |
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| 165 | #model.phi_pd.range(0, 360) |
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| 166 | #model.psi_pd.range(0, 360) |
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| 167 | |
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[87985ca] | 168 | else: |
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| 169 | print "No parameters for %s"%name |
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| 170 | sys.exit(1) |
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[8cdb9f1] | 171 | |
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[abb22f4] | 172 | model.cutoff = cutoff |
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[7cf2cfd] | 173 | M = Experiment(data=data, model=model) |
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[5d3d7b4] | 174 | if section == "both": |
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[7cf2cfd] | 175 | tan_model = Model(model.kernel, **model.parameters()) |
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[87985ca] | 176 | tan_model.phi = model.phi - 90 |
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[5d3d7b4] | 177 | tan_model.cutoff = cutoff |
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[7cf2cfd] | 178 | tan_M = Experiment(data=tan_data, model=tan_model) |
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[346bc88] | 179 | problem = FitProblem([M, tan_M]) |
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[87985ca] | 180 | else: |
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[346bc88] | 181 | problem = FitProblem(M) |
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