Pulse processing routines for neutron time-of-flight data

Pulse processing routines for neutron time-of-flight data
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中子飞行时间数据的脉冲处理例程

DOI:
10.1016/j.nima.2015.12.054
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发表时间:
2016
期刊:
ArXiv
影响因子:
--
通讯作者:
M. Barbagallo
M. Barbagallo
中科院分区:
--
文献类型:
--
作者:
P. Žugec;C. Weiss;C. Guerrero;F. Gunsing;V. Vlachoudis;M. Sabate;A. Stamatopoulos;T. Wright;J. Lerendegui;F. Mingrone;J. Ryan;S. Warren;A. Tsinganis;M. Barbagallo

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描述了一个脉冲波形分析框架,该框架是为欧洲核子研究中心n-TOF设施运行的第三阶段n-TOF-Phase3开发的。这个新框架最显著的特点是采用了通用的脉搏形状分析例程,其特征是对脉搏的性质进行了最少数量的显式假设。这些例行程序的目的是适用于各种各样的检测器,从而促进将新的检测器或类型的检测器引入分析框架。通过调整外部输入参数集,例程的操作细节适合特定检测器的特定要求。描述了脉冲识别、基线计算和脉冲波形拟合过程。特别强调了它们的计算效率,因为这些概念上简单的方法的最基本实现通常在计算上效率低下。
A pulse shape analysis framework is described, which was developed for n_TOF-Phase3, the third phase in the operation of the n_TOF facility at CERN. The most notable feature of this new framework is the adoption of generic pulse shape analysis routines, characterized by a minimal number of explicit assumptions about the nature of pulses. The aim of these routines is to be applicable to a wide variety of detectors, thus facilitating the introduction of the new detectors or types of detectors into the analysis framework. The operational details of the routines are suited to the specific requirements of particular detectors by adjusting the set of external input parameters. Pulse recognition, baseline calculation and the pulse shape fitting procedure are described. Special emphasis is put on their computational efficiency, since the most basic implementations of these conceptually simple methods are often computationally inefficient.
DOI: 10.1140/epja/i2013-13027-6
发表时间: 2013-02-01
影响因子: 2.7
作者:
Guerrero, C.;Tsinganis, A.;Zugec, P.
通讯作者: Zugec, P.