PAPER / ARXIV:2609.07541
T. Avgitas , M. Axiotis , Z. Balmforth , P. Gadow , I. Giomataris , D. Fassouliotis , J. Fock , P. Knights , A. Lagoyannis , I. Manthos , L. Millins , K. Nikolopoulos , I. Oceano , C. Prodromou , L. Schweder , E. Taimpiri , C. Toukmenidis , A. Ziagkova , R. Ward
RESUMO
Neutron spectroscopy is an invaluable tool for a wide range of scientific and industrial applications, however, current approaches suffer from limitations that restrict their field of applicability. A safe and inexpensive alternative approach to neutron detection and spectroscopy is the use of a nitrogen-filled spherical proportional counter that exploits the $^{14}\rm{N(n,p)}^{14}\rm{C}$ and $^{14}\rm{N(n},\alpha)^{11}\rm{B}$ reactions. The neutron spectroscopy capabilities of the detector are demonstrated using beams of mono-energetic neutrons. A nitrogen-filled spherical proportional counter, operating at a pressure of $1$ bar, is exposed to neutrons with energies from $0.75$ MeV to $2.75$ MeV at the Tandem accelerator of the National Centre for Scientific Research ``Demokritos'' in Athens. A linear energy response is observed, within the statistical precision of the measurements.
NO MESMO MAPA