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首页> 外文期刊>IEEE Transactions on Nuclear Science >Optimization of the Detection of Very Inclined Showers Using a Spectral Trigger Based on the Discrete Cosine Transform in Arrays of Surface Detectors
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Optimization of the Detection of Very Inclined Showers Using a Spectral Trigger Based on the Discrete Cosine Transform in Arrays of Surface Detectors

机译:基于离散余弦变换的光谱探测器在表面探测器阵列中优化非常倾斜的阵雨的检测

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摘要

The trigger based on the Discrete Cosine Transform (DCT) allows recognition of ADC traces of a specific shape i.e., with a very short rise time and fast exponential attenuation related to a narrow, flat muon component of very inclined extensive air showers generated by hadrons and starting their development early in the atmosphere (“old” showers). Showers, crossing a surface detector composed of water Cherenkov tanks, such as those in the Pierre Auger Observatory generate Cherenkov light, which may hit photomultipliers (PMTs) directly or after several reflections. The geometry of the water Cherenkov tank imposes a type of the filter preferring the detection of very inclined showers (with very large zenith angle), where mainly two PMTs can be hit by direct light. The 3rd PMT is then hit by reflected light, but with some delay. For the fast sampling (80 MHz), this delay causes the signal to appear in the next time bin. Two-fold coincidences of DCT coefficients allow triggering signals that are ignored at that time due to either too high an amplitude threshold for three-fold coincidences in a single time bin (the standard Auger threshold trigger) or due to the de-synchronization of the signals in time caused by the tank geometry (delay on one or more time bins due to a longer light path corresponding to the reflection on the tank walls). Three DCT engines implemented into EP3C40F324I7 FPGA use all DSP blocks and generate the spectral trigger, when 8 DCT coefficients simultaneously are inside the acceptance lane in at least 2 channels. An additional veto signal (analyzing the amplitude) controls the trigger rate to avoid a saturation of a transmission channel. In a test performed in the Pierre Auger laboratory in Malargue (Argentina), the spectral trigger has been tuned for shapes corresponding to “old” showers. Both laboratory and long-term field measurements on a test tank confirmed a high efficiency of the recognition of expected patt- rns of ADC traces. The patterns of the spectral trigger for “young” showers are being optimized in simulations. We expect to detect “young” showers close to their cores.
机译:基于离散余弦变换(DCT)的触发器可以识别特定形状的ADC迹线,即具有非常短的上升时间和快速指数衰减,这与强子和强子产生的非常倾斜的大风淋的狭窄平坦的μ子分量有关。在大气层(“旧”阵雨)中尽早开始开发。骤雨穿过由切伦科夫水箱组成的表面探测器,例如皮埃尔·奥格天文台中的那些,产生了切伦科夫光,它可能直接撞击光电倍增管(PMT),也可能经过几次反射。 Cherenkov水箱的几何形状强加了一种过滤器,该过滤器更适合检测倾斜度很高的淋浴器(具有非常大的天顶角),其中主要是两个PMT可能被直射光击中。然后,第三PMT会被反射光击中,但会有些延迟。对于快速采样(80 MHz),此延迟导致信号出现在下一个时间段中。 DCT系数的两倍重合允许触发信号在那时被忽略,这是由于单个时间仓中的三重重合的幅度阈值太高(标准俄歇阈值触发)或由于信号由储罐的几何形状引起(由于对应于储罐壁反射的较长的光路,在一个或多个时间仓上发生了延迟)。当至少8个DCT系数同时在至少2个通道的接收通道内时,在EP3C40F324I7 FPGA中实现的三个DCT引擎将使用所有DSP模块并生成频谱触发。附加的否决信号(分析幅度)控制触发速率,以避免传输通道饱和。在位于马拉格(阿根廷)的皮埃尔·奥格(Pierre Auger)实验室进行的一项测试中,已将光谱触发器调整为与“旧”花洒相对应的形状。在测试罐上进行的实验室和长期现场测量都证实了对ADC迹线预期图案的识别效率很高。模拟中优化了“年轻”阵雨的光谱触发模式。我们希望检测到接近其核心的“年轻”阵雨。

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