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Monte Carlo calculation of energy deposition in ionization chambers for tritium measurements

机译:tri测量中电离室中能量沉积的蒙特卡洛计算

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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.
机译:使用蒙特卡罗代码MCNP 5,对用于tri测量的电离室中的能量沉积进行了理论研究,模拟中评估了许多因素的影响,包括载气,腔室大小,壁材料和气压。研究发现,tri所发射的β射线向流过氩气的腔室中沉积的能量要比氘在其中流过的腔室多得多,在100 Pa的压力下,higher射线的能量高出2.7倍。随着腔室尺寸的减小,能量沉积急剧减少。对于1 mL的电离室,在100 Pa的压力下,β射线沉积的能量不到其能量的1%,即使气压高达100 kPa,β射线也只能沉积其能量的84%。这也表明镀金的电离室导致最高的沉积率,而铝导致的沉积率最低。另外,通过与实验数据进行比较来验证仿真。结果表明,仿真与实验数据吻合良好。

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