首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Digital-sampling systems in high-resolution and wide dynamic-range energy measurements: Finite time window, baseline effects, and experimental tests
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Digital-sampling systems in high-resolution and wide dynamic-range energy measurements: Finite time window, baseline effects, and experimental tests

机译:高分辨率和宽动态范围能量测量中的数字采样系统:有限的时间窗口,基线影响和实验测试

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摘要

Fast digital sampling and signal processing of the output of charge-sensitive preamplifiers connected to solid-state detectors, used in nuclear physics experiments, constitute effective replacements of the standard analog methods. If high-resolution and high-speed sampling Analog to Digital Converters (ADCs) are used, both the energy and timing resolution performances of the detector can be effectively exploited. The choice of a particular fast ADC in these applications is strictly related to the desired resolution and dynamic range of the system. In this paper a quantitative evaluation of system resolution is carried out-the results of [L. Bardelli and G. Poggi, Digital sampling-systems in high-resolution and wide dynamic-range energy measurements: comparison with peak sensing ADCs, this issue] are extended taking into account not only the detector noise, the digitizer properties, and the digital shaping, but also the use of a finite time interval for both baseline evaluation and digital shaping. The resulting performances are expressed using the parameter PSENOB [L. Bardelli, G. Poggi, Digital sampling-systems in high-resolution and wide dynamic-range energy measurements: comparison with peak sensing ADCs, this issue] and two additional correction terms. The effects due to ADC non-linearities are also briefly addressed. Simulations are presented to validate the proposed recipe. Experimental tests using a germanium detector in a wide dynamic-range configuration (at different counting rates) as well as an application to Delta E-E charged particle identification are shown. The presented discussion and results can be directly extended to various experimental arrangements. (c) 2006 Elsevier B.V. All rights reserved.
机译:连接到固态检测器的电荷敏感型前置放大器输出的快速数字采样和信号处理,用于核物理实验,是对标准模拟方法的有效替代。如果使用高分辨率和高速采样模数转换器(ADC),则可以有效利用检测器的能量和定时分辨率性能。在这些应用中选择特定的快速ADC严格与所需的系统分辨率和动态范围有关。在本文中,对系统分辨率进行了定量评估-[L。 Bardelli和G. Poggi,高分辨率和宽动态范围能量测量中的数字采样系统:与峰值感应ADC的比较,此问题]得到扩展,不仅考虑了检测器噪声,数字化仪特性和数字整形,而且还使用有限的时间间隔进行基线评估和数字整形。使用参数PSENOB [L。 Bardelli,G。Poggi,高分辨率和宽动态范围能量测量中的数字采样系统:与峰值感应ADC的比较,本期]和另外两个校正项。还简要介绍了由于ADC非线性引起的影响。进行仿真以验证建议的配方。显示了使用锗探测器在宽动态范围配置(不同计数率)下进行的实验测试,以及在Delta E-E带电粒子识别中的应用。提出的讨论和结果可以直接扩展到各种实验安排。 (c)2006 Elsevier B.V.保留所有权利。

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