Title of article :
Monte Carlo calculation of energy deposition in ionization chambers for tritium measurements
Author/Authors :
Zhilin، نويسنده , , Chen and Shuming، نويسنده , , Peng and Dan، نويسنده , , Meng and Yuehong، نويسنده , , He and Heyi، نويسنده , , Wang، نويسنده ,
Pages :
4
From page :
7
To page :
10
Abstract :
Energy deposition in ionization chambers for tritium measurements has been theoretically studied using Monte Carlo code MCNP 5. The influence of many factors, including carrier gas, chamber size, wall materials and gas pressure, has been evaluated in the simulations. It is found that β rays emitted by tritium deposit much more energy into chambers flowing through with argon than with deuterium in them, as much as 2.7 times higher at pressure 100 Pa. As chamber size gets smaller, energy deposition decreases sharply. For an ionization chamber of 1 mL, β rays deposit less than 1% of their energy at pressure 100 Pa and only 84% even if gas pressure is as high as 100 kPa. It also indicates that gold plated ionization chamber results in the highest deposition ratio while aluminum one leads to the lowest. In addition, simulations were validated by comparison with experimental data. Results show that simulations agree well with experimental data.
Keywords :
Energy deposition , Tritium measurement , ionization chamber
Journal title :
Astroparticle Physics
Record number :
2008706
Link To Document :
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