Title of article :
Study of the beam-induced neutron flux and required shielding for DIANA
Author/Authors :
Best، نويسنده , , Andreas and Couder، نويسنده , , Manoel and Famiano، نويسنده , , Michael and Lemut، نويسنده , , Alberto and Wiescher، نويسنده , , Michael، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
5
From page :
104
To page :
108
Abstract :
Low energy accelerators in underground locations have emerged as a powerful tool for the measurement of critical nuclear reactions for the study of energy production and element synthesis in astrophysics. While cosmic ray induced background is substantially reduced, beam induced background on target impurities and depositions on target and collimator materials remain a matter of serious concern. al Ion Accelerator for Nuclear Astrophysics (DIANA) is proposed to operate as a low-level background facility in an underground location. One of the main goals of DIANA is the study of neutron sources in stellar helium burning. For these experiments DIANA is a neutron radiation source which may affect other nearby low background level experiments. We therefore investigated the required laboratory layout to attenuate the neutron flux generated in a worst-case scenario to a level below the natural background in the underground environment. Detailed Monte Carlo calculations of the neutron propagation in the laboratory show that a neutron flux many orders of magnitude above expected values gets attenuated below the natural background rate using a 1 m thick water-shielded door as well as an emergency access/egress maze.
Keywords :
neutron shielding , Underground laboratory , Monte Carlo simulation
Journal title :
Nuclear Instruments and Methods in Physics Research Section A
Serial Year :
2013
Journal title :
Nuclear Instruments and Methods in Physics Research Section A
Record number :
2194595
Link To Document :
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