Simulation of the X-ray response of scintillator coated silicon CCDs
Christer Fröjdh, Hans‐Erik Nilsson, Per Nelvig, C. Sture Petersson
Abstract
Christer Fröjdh, Hans‐Erik Nilsson, Per Nelvig, C. Sture Petersson
Abstract
Silicon CCDs are used for X-ray imaging in fields as dentistry and materials testing. Due to the low X-ray absorption in silicon the CCD is generally coated with a scintillating layer. In order to evaluate the response for different combinations of scintillator material, scintillator geometry and detector we have developed a simulation program. The program calculates the signal to noise ratio and spatial resolution based on both the signal from the scintillating layer and the signal from direct detection of X-rays in the detector. Results obtained with this program indicate that the signal to noise ratio in the system is optimized by using a scintillator with high X-ray absorption and high light output while minimizing the signal from direct detection in the CCD. The spatial resolution can be increased by defining pixels in the scintillator.
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Silicon CCDs are used for X-ray imaging in fields as dentistry and materials testing. Due to the low X-ray absorption in silicon the CCD is generally coated with a scintillating layer. In order to evaluate the response for different combinations of scintillator material, scintillator geometry and detector we have developed a simulation program. The program calculates the signal to noise ratio and spatial resolution based on both the signal from the scintillating layer and the signal from direct detection of X-rays in the detector. Results obtained with this program indicate that the signal to noise ratio in the system is optimized by using a scintillator with high X-ray absorption and high light output while minimizing the signal from direct detection in the CCD. The spatial resolution can be increased by defining pixels in the scintillator.
Key concepts: Scintillator, Detector, X-ray detector, Optics, SIGNAL (programming language), Image resolution, Physics, Noise (video)