scholarly journals High-intensity pion beam line at JHF

1998 ◽  
Vol 639 (1-2) ◽  
pp. 121c-124c ◽  
Author(s):  
H. Noumi
Keyword(s):  
Author(s):  
Y. Doi ◽  
O. Araoka ◽  
H. Hirabayashi ◽  
K. Hosoyama ◽  
S. Kurokawa ◽  
...  
Keyword(s):  

Author(s):  
S. Busold ◽  
D. Schumacher ◽  
O. Deppert ◽  
C. Brabetz ◽  
F. Kroll ◽  
...  
Keyword(s):  

2010 ◽  
Vol 20 (3) ◽  
pp. 1948-1951
Author(s):  
T Adachi ◽  
Y Ikedo ◽  
K Nakahara ◽  
Y Miyake ◽  
K Shimomura ◽  
...  
Keyword(s):  

Author(s):  
Sumin Wei ◽  
Yinlong Lv ◽  
Tianjue Zhang ◽  
Zhenghe Zhou ◽  
Zhenguo Li ◽  
...  

The purpose of this paper is to give an interim report on a spark chamber experiment to determine the differential cross section of the reaction π - + p → π - + p at a number of pion momenta in the vicinity of the 2.07 GeV/ c resonance as reported by Diddens et al . (1963). The experiment was performed on a pion beam produced from a target internal to the Nimrod vacuum vessel. The beam transport system was conventional, containing an intermediate and final image with an achromatic pair of momentum analysing magnets in the two halves of the beam line.


2012 ◽  
Vol 733 ◽  
pp. 297-305
Author(s):  
Andrej Zeman ◽  
K. Tuček ◽  
G. Daquino ◽  
L. Debarberis ◽  
A. Hogenbirk

As part of an exploratory research project at the Institute for Energy (Joint Research Centre of the European Commission), a feasibility assessment was performed for the design and construction of a high-intensity positron facility (HIPOS) in a neutron beam tube, HB9, at the High Flux Reactor (HFR) in Petten. The full model of reactor core, reflector and reactor instrumentation at the neutron beam line HB9 were modeled and full neutronic and photonic calculations were carried out by MCNP4C3. The source file was generated in two formats: SDEF and WESSA. Consequently, two different codes were used for scoring analysis for the optimization of the concept and geometry of positron generator. The main concept including key design parameters have been evaluated independently by two computer codes, in particular MCNP-X and GEANT4. The parametric design analysis including the optimization of positron generator at the pre-selected neutron beam line is reported in this paper. The detailed assessment of the critical design parameters, specifically from technological point of view is summarised. The results of independent analysis confirmed that the best approach is to combine two concepts of positron generation, which are based on the exploiting of neutron and gamma radiation. The results verified that the proposed concept can reach the defined threshold of the positron yield and the positron beam can reach an intensity of 1013e+/sec (un-moderated). The details of completed work are reported in this paper.


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