首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >Energy calibration of pixel detector working in Time-Over-Threshold mode using test pulses
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Energy calibration of pixel detector working in Time-Over-Threshold mode using test pulses

机译:使用测试脉冲以时间阈值模式工作的像素检测器的能量校准

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The semiconductor pixel detector Timepix (256 × 256 pixels with pitch of 55 um) can be used for energy measurements. This measurements require knowledge of the energy calibration of each pixel of the matrix. Such a calibration is very nonlinear in the low energy range. A method already exists that uses radiation sources for calibration of each pixel of the matrix. The response of each pixel is measured and evaluated in order to acquire parameters for a surrogate calibration function. This method requires analysis of thousands of spectra and performing thousands of fits. A new calibration procedure has been designed that combines Timepix test pulse functionality and measurement with radiation sources. This procedure significantly reduces time needed for calibration. In the first part of the method a relative calibration is obtain by injecting a defined test charges into all pixels of the matrix. In the second phase a calibration precision is improved and converted to absolute scale by irradiating the detector with a source. After such a complex calibration, it is possible to perform a recalibration of the detector, without the need for a source. The new procedure is fully automatic and is built into a current control and data acquisition software for Timepix detectors as an extension module.
机译:半导体像素检测器Timepix(间距为55 um的256×256像素)可用于能量测量。这种测量需要了解矩阵每个像素的能量校准。这样的校准在低能量范围内是非常非线性的。已经存在一种使用辐射源对矩阵的每个像素进行校准的方法。测量并评估每个像素的响应,以获取用于替代校准功能的参数。此方法需要分析数千个光谱并执行数千个拟合。设计了新的校准程序,将Timepix测试脉冲功能和测量与辐射源结合在一起。此过程大大减少了校准所需的时间。在该方法的第一部分中,通过将定义的测试电荷注入矩阵的所有像素中来获得相对校准。在第二阶段,通过向检测器照射光源,提高了校准精度并将其转换为绝对比例。经过如此复杂的校准后,可以对检测器进行重新校准,而无需光源。新程序是完全自动化的,并作为扩展模块内置于用于Timepix检测器的当前控制和数据采集软件中。

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