Update 'Absorption Imaging Class'
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@ -17,6 +17,8 @@ The path of those three standard pictures should be "camera_orientation\camera_l
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Just for get the absorption imaging, it doesn't require any information about camera and transition. But any further calculation, it has to call "transition" and "camera"
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\_\_enter\_\_ and \_\_exit\_\_ functions is defined. But be careful, \_\_enter\_\_ function will calculate the atom number.
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### Parameters:
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* **data_path** *(unknown, necessary)*: The path of hdf5 file provided by lyse moduel in LabScript.
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* **camera_orientation** *(string, necessary)*: Name of the camare group in hdf5 file.
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@ -24,4 +26,21 @@ Just for get the absorption imaging, it doesn't require any information about ca
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* **transition** *(objet of class dylab.TransitionClass.Transition, optional)*: A constant dictionary class storing the information of transition.
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* **camera** *(object of class dylab.Camera.\*, optional)*: A constant dictionary class storing the information of camera.
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* **detuning** *(float, optional)*: Detuning of the laser beam.
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* **Intensity** *(float, optional)*: Laser beam intensity at the position of atom cloud!
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* **Intensity** *(float, optional)*: Laser beam intensity at the position of atom cloud!
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## absorption_imaging.set_image_name()
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> dylab.absorption_imaging.set_image_name(image, name):
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It can set the searching name of those three satandard images. The defualt names are "atoms", "background" and "dark".
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### Parameters:
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* **image** *(string, necessary)*: The contents of dictionary storing the name of those three images. It has to be one of "atoms", "background" and "dark".
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* **name** *(string, necessary)*: The new searching name.
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### Return
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* Nothing
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## absorption_imaging.get_image_absorption
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> dylab.absorption_imaging.get_image_absorption():
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It will calculate the absorption imaging, integrating in \_\_enter\_\_ function
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