Neutron time-of-flight spectroscopy measurement using a waveform digitizer
The photoneutron source (PNS, phase 1), an electron linear accelerator (linac)-based pulsed neutron facility that uses the time-of-flight (TOF) technique, was constructed for the acquisition of nuclear data from the Thorium Molten Salt Reactor (TMSR) at the Shanghai Institute of Applied Physics (SIN...
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Published in | Chinese physics C Vol. 40; no. 5; pp. 70 - 74 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
01.05.2016
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Subjects | |
Online Access | Get full text |
ISSN | 1674-1137 0254-3052 |
DOI | 10.1088/1674-1137/40/5/056202 |
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Abstract | The photoneutron source (PNS, phase 1), an electron linear accelerator (linac)-based pulsed neutron facility that uses the time-of-flight (TOF) technique, was constructed for the acquisition of nuclear data from the Thorium Molten Salt Reactor (TMSR) at the Shanghai Institute of Applied Physics (SINAP). The neutron detector signal used for TOF calculation, with information on the pulse arrival time, pulse shape, and pulse height, was recorded by using a waveform digitizer (WFD). By using the pulse height and pulse-shape discrimination (PSD) analysis to identify neutrons and "y-rays, the neutron TOF spectrum was obtained by employing a simple electronic design, and a new WFD-based DAQ system was developed and tested in this commissioning experiment. The DAQ system developed is characterized by a very high efficiency with respect to millisecond neutron TOF spectroscopy. |
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AbstractList | The photoneutron source (PNS, phase 1), an electron linear accelerator (linac)-based pulsed neutron facility that uses the time-of-flight (TOF) technique, was constructed for the acquisition of nuclear data from the Thorium Molten Salt Reactor (TMSR) at the Shanghai Institute of Applied Physics (SINAP). The neutron detector signal used for TOF calculation, with information on the pulse arrival time, pulse shape, and pulse height, was recorded by using a waveform digitizer (WFD). By using the pulse height and pulse-shape discrimination (PSD) analysis to identify neutrons and gamma -rays, the neutron TOF spectrum was obtained by employing a simple electronic design, and a new WFD-based DAQ system was developed and tested in this commissioning experiment. The DAQ system developed is characterized by a very high efficiency with respect to millisecond neutron TOF spectroscopy. The photoneutron source (PNS, phase 1), an electron linear accelerator (linac)-based pulsed neutron facility that uses the time-of-flight (TOF) technique, was constructed for the acquisition of nuclear data from the Thorium Molten Salt Reactor (TMSR) at the Shanghai Institute of Applied Physics (SINAP). The neutron detector signal used for TOF calculation, with information on the pulse arrival time, pulse shape, and pulse height, was recorded by using a waveform digitizer (WFD). By using the pulse height and pulse-shape discrimination (PSD) analysis to identify neutrons and "y-rays, the neutron TOF spectrum was obtained by employing a simple electronic design, and a new WFD-based DAQ system was developed and tested in this commissioning experiment. The DAQ system developed is characterized by a very high efficiency with respect to millisecond neutron TOF spectroscopy. |
Author | 刘龙祥 王宏伟 马余刚 曹喜光 蔡翔舟 陈金根 张桂林 韩建龙 张国强 胡继峰 王小鹤 |
AuthorAffiliation | Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China Key Laboratory of Nuclear Radiation and Nuclear Technology, Chinese Academy of Science, Shanghai 201800, China |
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CitedBy_id | crossref_primary_10_2139_ssrn_4179119 crossref_primary_10_1016_j_nimb_2017_08_022 crossref_primary_10_1016_j_radphyschem_2022_110684 crossref_primary_10_1109_JSEN_2024_3360332 crossref_primary_10_1016_j_pnucene_2019_03_026 |
Cites_doi | 10.1016/S0168-9002(02)01790-4 10.1016/S0168-9002(01)02115-5 |
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Notes | 11-5641/O4 The photoneutron source (PNS, phase 1), an electron linear accelerator (linac)-based pulsed neutron facility that uses the time-of-flight (TOF) technique, was constructed for the acquisition of nuclear data from the Thorium Molten Salt Reactor (TMSR) at the Shanghai Institute of Applied Physics (SINAP). The neutron detector signal used for TOF calculation, with information on the pulse arrival time, pulse shape, and pulse height, was recorded by using a waveform digitizer (WFD). By using the pulse height and pulse-shape discrimination (PSD) analysis to identify neutrons and "y-rays, the neutron TOF spectrum was obtained by employing a simple electronic design, and a new WFD-based DAQ system was developed and tested in this commissioning experiment. The DAQ system developed is characterized by a very high efficiency with respect to millisecond neutron TOF spectroscopy. neutron spectroscopy, scintillator, waveform digitizer, pulse-shape discrimination (PSD), time-of-flight (TOF) ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 |
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References | 12 13 17 Kornilov N.V. (11); 497 18 Lin Z K (7) 2012; 23 19 Zhang M (10) 2003 Chang Le (15) 2015; 38 (5) 2014 Wang Hongwei (9) 2014; 37 Jiang Mianheng (6) 2012; 27 1 2 4 Du Long (14) 2014; 37 Lin Z K (8) 2012; 46 Chang Le (16) 2015; 38 Kim G N (3) 2001; 38 |
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Snippet | The photoneutron source (PNS, phase 1), an electron linear accelerator (linac)-based pulsed neutron facility that uses the time-of-flight (TOF) technique, was... The photoneutron source (PNS, phase 1), an electron linear accelerator (linac)-based pulsed neutron facility that uses the time-of-flight (TOF) technique, was... |
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SubjectTerms | Design analysis Digitization Electronics Linear accelerators Nuclear reactor components Pulse height Spectroscopy Waveforms 中子源 医用电子直线加速器 数字化仪 数据采集系统 波形 测量 脉冲中子 飞行时间谱 |
Title | Neutron time-of-flight spectroscopy measurement using a waveform digitizer |
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