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Imaging Using Energy Discriminating Radiation Detector Array

机译:使用能量辨别辐射探测器阵列成像

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Industrial X-ray radiography is often done using a broad band energy source and always a broad band energy detector. There exist several major advantages in the use of narrow band sources and or detectors, one of which is the separation of scattered radiation from primary radiation. ARDEC has developed a large detector array system in which every detector element acts like a multi-channel analyzer. A radiographic image is created from the number of photons detected in each detector element, rather than from the total energy absorbed in the elements. For high energies, 25 KeV to 4 MeV, used in radiography, energy discriminating detectors have been limited to less than 20,000 photons per second per detector element. This rate is much too slow for practical radiography. Our detector system processes over two million events per second per detector pixel, making radiographic imaging practical. This paper expounds on the advantages of the ARDEC radiographic imaging process.
机译:工业X射线射线造影通常使用宽带能源和宽带能量检测器进行。在使用窄带来源和或探测器中存在几个主要优点,其中一个是从初级辐射分离散射辐射。 ARDEC开发了一个大型探测器阵列系统,每个探测器元件都像多通道分析仪一样。从每个检测器元件中检测到的光子的数量,而不是从元件中吸收的总能量产生射线照相图像。对于高能量,25keV至4 MeV,用于射线照相中使用的,能量判别检测器的每秒每秒小于20,000光子。实际放射线照相术价太慢了。我们的探测器系统每秒每秒超过200万场比赛,使射线照相成像实用。本文阐述了ARDEC射线显影成像过程的优势。

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