高压氙气探测器降噪策略的实现

A. Seifert, B. Milbrath, W. Pitts, E. Smith
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引用次数: 4

摘要

高压氙气(HPXe)探测器历来无法达到甚至接近理论预测的能量分辨率,这种现象通常归因于麦克风,振动或声学噪声的问题。所有这些噪声都应该具有特征频率特征。我们确定了外界噪声信号对HPXe光谱仪分辨率的影响,并实现了一种实时降低或消除外界噪声造成的分辨率损失的技术。使用精密波形发生器作为400瓦扬声器的驱动器,我们通过对缓冲检测器输出信号进行快速傅立叶变换并记录频域频谱响应的畸变,确定了商用HPXe检测器对各种恒频噪声信号的响应。利用频率响应信息开发了一个数据采集包,对每个伽马射线脉冲进行实时数字信号噪声滤波。在外部噪声的影响下,HPXe伽玛能谱的分辨率下降了2 ~ 3倍。使用降噪数据采集包,光谱分辨率恢复到与理想(无噪声)条件下测量的分辨率相当的值。
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Implementation of a noise mitigation strategy for a high-pressure xenon detector
High-pressure xenon (HPXe) detectors have historically been unable to achieve or even approach the theoretically predicted energy resolution, a phenomenon usually attributed to problems with microphonic, vibrational, or acoustic noise. All these noises are expected to have characteristic frequency signatures. We have determined the effects of external acoustic noise signals on the resolution of HPXe spectrometers and implemented a technique to reduce or eliminate the resolution loss caused by external acoustic noise in real time. Using a precision waveform generator as the driver on a 400-watt speaker, we determined the response of a commercial HPXe detector to a variety of constant frequency acoustic noise signals by performing a fast Fourier transform on a buffered detector output signal and noting distortions to the spectral response of the frequency domain. A data acquisition package was developed using the frequency response information to perform realtime digital signal noise filtering on each gamma-ray pulse. With external acoustic noise, the measured resolution of HPXe gamma-ray energy spectra was degraded by a factor of 2 to 3. With the noise mitigating data acquisition package the spectroscopic resolution was restored to values comparable to the resolution measured under ideal (non-noisy) conditions.
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