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Neutron energy was determined by the time-of-flight method Measurements of the response functions of a large size NE213 organic liquid scintillator for neutrons up to 800 MeV. Taniguchi S(1), Moriya T, Takada M, Hatanaka K, Wakasa T, Saito T. Author information: (1)Japan Synchrotron Radiation Research Laboratory (JASRI), Koto 1-1-1, Mikazuki-cho, Sayo-gun, Hyogo 679-5198, Japan. shingo@spring8.or.jp The development of both liquid and gaseous 4He based scintillators for fast-neutron detection has been reported [6,8,12,14,15]. 4He, like most noble gases, is a good scintillator. It has an ultra-violet light yield comparable to the intrinsic non-Tl doped light yield of NaI crystals [16–19]. A comparative study of n-γ discrimination by the digital charge comparison method was carried out for NE213 and BC501A scintillators of different size couple 2021-02-24 · A compact NE213 liquid scintillator, fully characterized at Physikalisch-Technische Bundesanstalt, was installed and operated at the Joint European Torus (JET) during two experimental campaigns (C8-2002 and trace tritium experiment-TTE 2003). The neutron response functions of diameter by long NE213 organic liquid scintillator have been measured in the energy range from 50 to at the Heavy-Ion Medical Accelerator in Chiba (HIMAC). When using an organic liquid scintillator such as NE213 for neutron spectrometry, the light output as a function of proton energy is needed in order to unfold the neutron spectrum from the Abstract The absolute values of the neutron response functions of a 12.7 cm diameter by 12.7 cm long NE213 organic liquid scintillator were measured using a quasi-monoenergetic neutron field in the energy range of 66– 206 MeV via the 7Li(p,n)7Be reaction in the ring cyclotron facility at RIKEN.
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EJ-309 has been developed as an alternate to the more commonly used low-flash point PSD liquid scintillators based on the solvent xylene. NE213 organic scintillator detectors are widely used for the measurements of neutron energy spectrum in mixed neutron-gamma fields due to their pulse shape discrimination properties. In this paper, we present the results obtained from the data analysis of neutron spectra measured with a NE213 liquid scintillator at JET. We calculated the neutron response matrix of the instrument combining MCNPX simulations, a generic proton light output function measured with another detector and the fit of data from ohmic pulses. The goal of the work presented in this thesis is to estimate to which extent a compact detector such as a NE213 liquid scintillator can be used to perform neutron emission spectroscopy analysis. The detector used for this study was installed in the back of the MPRu spec- trometer at JET in 2012. An organic liquid scintillator, such as NE213 and BC501A, is widely used for neutron spectrum measurement behind a shield by coupling with the unfolding technique, because it has a high detection efficiency, good neutron–photon discrimination performance and comparably good energy resolution. In this work we present a method to evaluate the neutron response function of an NE213 liquid scintillator.
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Fig. 6. FOM temperature dependence of The versatility of liquid scintillation detectors provides an excellent means of approaching many problems in the detection of nuclear radiation.
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EJ301 (molecular formula: C6H4(CH3)2, density: 0.874 g/cm3) offer. Table 1) and the lithium-loaded liquid scintillator [15-18] (detector 6). ]. those of the well-known liquid scintillators, NE213, BC501A and EJ305, and secondly ( The temperature effect on the NE213 FOM scintillator is most pronounced for 0 degrees Celsius and then almost constant. Fig. 6.
A NE213 liquid scintillator, neutron detector designed for lifetime measurements of very neutron-rich nuclei
Pulse-shape discrimination in NE213 liquid scintillator detectors January 2012 Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated
In this work we present a method to evaluate the neutron response function of an NE213 liquid scintillator.
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Organic liquid scintillator detectors such as BC501A/ NE213/.
An organic liquid scintillator, such as NE213 and BC501A, is widely used for neutron spectrum measurement behind a shield by coupling with the unfolding technique, because it has a high detection efficiency, good neutron–photon discrimination performance and comparably good energy resolution. neutron detection liquid scintillation detectors neutron study NE213 liquid scintillator helium-3 proportional tube detector commercial electronics neutron measurements Neutrons Electron tubes Detectors Protons Biomedical measurements Atmospheric modeling Energy measurement proportional tube neutron spectrum liquid scintillator
Abstract The neutron response functions of 12.7 cm diameter by 12.7 cm long NE213 organic liquid scintillator have been measured in the energy range from 50 to 800 MeV at the Heavy-Ion Medical Accelerator in Chiba (HIMAC). Neutrons were generated by the 800 MeV / nucleon Si ion and 400 MeV / nucleon C ion bombardment on a thick carbon target. Neutron energy was determined by the time-of-flight
Request PDF | Pulse-shape discrimination in NE213 liquid scintillator detectors | The 16-channel fast stretcher BaFPro module, originally developed for processing signals of Barium Fluoride
The neutron response functions of 12.7 cm diameter by 12.7 cm long NE213 organic liquid scintillator have been measured in the energy range from 50 to 800 MeV at the Heavy-Ion Medical Accelerator in Chiba (HIMAC).
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Large NE213 Organic Liquid Scintillator. An NE213 (or BC501A) organic liquid scintillator coupled with a Fig. 1. Signal produced in the NE213 liquid scintillator cell by a g-ray from the 60Co source, acquired with a Flash ADC at 1 GHz sampling rate (solid symbols).
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Disputation: Liquid scintillators as neutron diagnostic tools for
EJ301 (molecular formula: C6H4(CH3)2, density: 0.874 g/cm3) offer. Table 1) and the lithium-loaded liquid scintillator [15-18] (detector 6). ]. those of the well-known liquid scintillators, NE213, BC501A and EJ305, and secondly ( The temperature effect on the NE213 FOM scintillator is most pronounced for 0 degrees Celsius and then almost constant.