scholarly journals Retracted: Multiplication of Fast Neutrons Source Flux by Using Deuterium-Helium-3 Plasma

2014 ◽  
Vol 2014 ◽  
pp. 1-1
Keyword(s):  
1975 ◽  
Vol 20 (1) ◽  
pp. 125-127 ◽  
Author(s):  
C J Parnell ◽  
B C Page ◽  
E J Jones

2020 ◽  
Vol 135 (7) ◽  
Author(s):  
Francesco Piscitelli ◽  
Giacomo Mauri ◽  
Alessio Laloni ◽  
Richard Hall-Wilton

AbstractIn the field of neutron scattering science, a large variety of instruments require detectors for thermal and cold neutrons. Helium-3 has been one of the main actors in thermal and cold neutron detection for many years. Nowadays, neutron facilities around the world are pushing their technologies to increase the available flux delivered at the instruments; this enables a completely new science landscape. Complementary with the increasing available flux, a better signal-to-background (S/B) ratio enables to perform new types of measurements. For instance, in neutron reflectometry, the time resolution for kinetic studies is limited by the available S/B. An improved S/B opens the possibility of sub-second kinetic studies. To this aim, this manuscript re-examines the background sensitivity of today’s “gold standard” neutron detection. Fast neutrons and gamma rays are the main background species in neutron scattering experiments. The efficiency (sensitivity) of detecting fast neutrons, cosmic rays and gamma rays, for a Helium-3-based detector is studied here through the comparison with Helium-4 counters. The comparison with Helium-4 allows to separate the thermal (and cold) neutron from the fast neutron contributions in Helium-3-based counters which are otherwise entangled, verifying previous results from an indirect method. A relatively high sensitivity is found. Moreover, an estimate for the cosmic neutron fluence, also a source of background, at ground level at ESS is presented in this manuscript.


1977 ◽  
Vol 28 (5) ◽  
pp. 459-461 ◽  
Author(s):  
B.V. Zatolokin ◽  
I.O. Konstantinov ◽  
N.N. Krasnov ◽  
S.A. Kazanskiy ◽  
M.I. Svirin
Keyword(s):  

2013 ◽  
Vol 2013 ◽  
pp. 1-4 ◽  
Author(s):  
Mohammad Mahdavi ◽  
Maryam Shahbahrami

The production of fast neutrons source is examined by using a thermal neutron flux inside plasma. In order to reach a favorable yield of fast neutrons flux, the parameters such as energy loss rate, reaction probability, and neutron absorption length are calculated. The nuclear conversion efficiency, , of thermal neutron to fast neutrons is obtained to be by calculating the physical parameters for the plasma designed.


2017 ◽  
Vol 51 (5) ◽  
pp. 439-448
Author(s):  
László Palcsu ◽  
László Kompár ◽  
József Deák ◽  
Péter Szűcs ◽  
László Papp

Author(s):  
Timur Smetani ◽  
Elizaveta Gureva ◽  
Vyacheslav Andreev ◽  
Natalya Tarasova ◽  
Nikolai Andree

The article discusses methods for optimizing the design of the Neutron Converter research plant design with parameters that are most suitable for a particular consumer. 38 similar plant structures with different materials and sources were calculated, on the basis of which the most optimal options were found. As part of the interaction between OKBM Afrikantov JSC and the Nizhny Novgorod State Technical University named after R. E. Alekseev, the Neutron Converter research plant was designed and assembled. The universal neutron converter is a device for converting a stream of fast neutrons emitted by isotopic sources into a "standardized" value of flux density with known parameters in the volume of the central part of the product, which is the working part of the universal neutron converter. To supply neutron converters to other customer organizations (universities, research organizations and collective centers), it is necessary to take into account the experience of operating an existing facility, as well as rationalize the design process of each specific instance in accordance with the requirements of the customer.


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