Title of article :
Improved response function calculations for scintillation detectors using an extended version of the MCNP code
Author/Authors :
Schweda، نويسنده , , K and Schmidt، نويسنده , , D، نويسنده ,
Pages :
5
From page :
155
To page :
159
Abstract :
The analysis of (e,e′n) experiments at the Darmstadt superconducting electron linear accelerator S-DALINAC required the calculation of neutron response functions for the NE213 liquid scintillation detectors used. In an open geometry, these response functions can be obtained using the Monte Carlo codes NRESP7 and NEFF7. However, for more complex geometries, an extended version of the Monte Carlo code MCNP exists. This extended version of the MCNP code was improved upon by adding individual light-output functions for charged particles. In addition, more than one volume can be defined as a scintillator, thus allowing the simultaneous calculation of the response for multiple detector setups. With the implementation of 12C(n,n′3α) reactions, all relevant reactions for neutron energies En<20 MeV are now taken into consideration. The results of these calculations were compared to experimental data using monoenergetic neutrons in an open geometry and a 252Cf neutron source in the complex Darmstadt setup, where in both cases excellent agreement was found.
Keywords :
Liquid scintillator NE213 , Complex geometry , Monte Carlo calculations , Response functions
Journal title :
Astroparticle Physics
Record number :
2018034
Link To Document :
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