Add data and reduction for IC5063/MKN3/MKN78
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@@ -16,11 +16,11 @@ import lib.plots as proj_plots #Functions for plotting data
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def main():
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##### User inputs
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## Input and output locations
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globals()['data_folder'] = "../data/NGC1068_x274020/"
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infiles = ['x274020at.c0f.fits','x274020bt.c0f.fits','x274020ct.c0f.fits',
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'x274020dt.c0f.fits','x274020et.c0f.fits','x274020ft.c0f.fits',
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'x274020gt.c0f.fits','x274020ht.c0f.fits','x274020it.c0f.fits']
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globals()['plots_folder'] = "../plots/NGC1068_x274020/"
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# globals()['data_folder'] = "../data/NGC1068_x274020/"
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# infiles = ['x274020at.c0f.fits','x274020bt.c0f.fits','x274020ct.c0f.fits',
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# 'x274020dt.c0f.fits','x274020et.c0f.fits','x274020ft.c0f.fits',
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# 'x274020gt.c0f.fits','x274020ht.c0f.fits','x274020it.c0f.fits']
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# globals()['plots_folder'] = "../plots/NGC1068_x274020/"
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# globals()['data_folder'] = "../data/NGC1068_x14w010/"
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# infiles = ['x14w0101t_c0f.fits','x14w0102t_c0f.fits','x14w0103t_c0f.fits',
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@@ -62,6 +62,18 @@ def main():
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# 'x3995202r_c0f.fits','x3995206r_c0f.fits']
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# globals()['plots_folder'] = "../plots/PG1630+377_x39510/"
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# globals()['data_folder'] = "../data/IC5063_x3nl030/"
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# infiles = ['x3nl0301r_c0f.fits','x3nl0302r_c0f.fits','x3nl0303r_c0f.fits']
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# globals()['plots_folder'] = "../plots/IC5063_x3nl030/"
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# globals()['data_folder'] = "../data/MKN3_x3nl010/"
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# infiles = ['x3nl0101r_c0f.fits','x3nl0102r_c0f.fits','x3nl0103r_c0f.fits']
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# globals()['plots_folder'] = "../plots/MKN3_x3nl010/"
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globals()['data_folder'] = "../data/MKN78_x3nl020/"
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infiles = ['x3nl0201r_c0f.fits','x3nl0202r_c0f.fits','x3nl0203r_c0f.fits']
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globals()['plots_folder'] = "../plots/MKN78_x3nl020/"
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## Reduction parameters
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# Deconvolution
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deconvolve = False
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@@ -85,13 +97,13 @@ def main():
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display_data = False
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# Smoothing
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smoothing_function = 'gaussian_after' #gaussian_after, gaussian or combine
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smoothing_FWHM = 0.10 #If None, no smoothing is done
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smoothing_scale = 'arcsec' #pixel or arcsec
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smoothing_FWHM = 2 #If None, no smoothing is done
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smoothing_scale = 'pixel' #pixel or arcsec
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# Rotation
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rotate = True #rotation to North convention can give erroneous results
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# Polarization map output
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figname = 'NGC1068_FOC' #target/intrument name
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figtype = '_gaussian_after_FWHM010_rot' #additionnal informations
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figname = 'MKN78_FOC' #target/intrument name
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figtype = '_gaussian_after_FWHM2_rot' #additionnal informations
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SNRp_cut = 3 #P measurments with SNR>3
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SNRi_cut = 30 #I measurments with SNR>30, which implies an uncertainty in P of 4.7%.
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step_vec = 1 #plot all vectors in the array. if step_vec = 2, then every other vector will be plotted
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