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Table of Contents

Mask

Equatorial mask

Mask parameters

Code Block
Wedge  871.5  878  450  383  148  196 1 k False False
Wedge  871.5  878  450  383  -27   21 1 k False False

where
Wedge parameters
Code Block

t   = pars[0]              # figure type, ex. 'Wedge'
x   = float(pars[1])       # x coordinate of the wedge center
y   = float(pars[2])       # y coordinate of the wedge center
r   = float(pars[3])       # 1-st radius of the wedge 
w   = float(pars[4])       # radial width of the wedge 
t1  = float(pars[5])       # 1-st angle
t2  = float(pars[6])       # 2-nd angle
lw  = int(pars[7])         # line width
col = str(pars[8])         # color
s   = self.dicBool[pars[9].lower()]   # isSelected boolean parameter
rem = self.dicBool[pars[10].lower()]  # isRemoved - helper parameter

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Involved sensors in adopted cxif5315 geometry: 0, 1,    9,15,    16,17,   25,31

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Quads numeration 

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in cxif5315 geometry
Code Block
visible image:
---------
| 1 | 0 |
----+----
| 2 | 3 |
---------

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Involved sensors in adopted cxif5315 geometry: 0, (1), 7,   8, (9), 15

Code Block
Quads numeration on visible image:
---------
| 1 | 0 |
----+----
| 2 | 3 |
---------

 

 

 

Radial background subtraction

For some reason polarization correction does not work well in this experiment for entire image.

Comparison of the 2-d interpolated radial background subtraction forsubtraction 

  • nbins (rad:500, phi:1) bins:

  • nbins (rad:500, phi:32) bins:

SIngle angular bin still works fine in our ROI defined by both masks.

 

 

 

 

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References