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Non-Recombined Plasma Influence on the Neutron Pulse of the Gas-Filled Neutron Tube

机译:非重组等离子体对气体中子管的中子脉冲的影响

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This article considers modeling of the gas-filled neutron tube's ion source with discharge initiated by the non-recombined plasma from the previous pulse. The simulation was carried out with a homogeneous distribution of the non-recombined plasma with a concentration of 5.108 cm-3. In the case of filling the neutron tube volume by atomic hydrogen with pressure of 10-3 Torr, the slew rate of the extracted atomic hydrogen ion current equals only 10 mkA/mks. For increasing this value gas mixture of atomic hydrogen and xenon at a pressure of 0.5.10-3 Torr or molecular hydrogen at a pressure of 10-3 Torr to the atomic hydrogen were utilized. This led to increasing of the slew rate of the extracted atomic hydrogen ion current to 100 mkA/mks with xenon and 20 mkA/mks with molecular hydrogen.
机译:本文考虑了通过从先前脉冲的非重组等离子体引发的放电的燃气中子管的离子源的建模。通过浓度为5.10的非重组等离子体的均匀分布进行模拟 8 厘米 -3 。在通过原子氢填充中子管体积的情况下,压力为10 -3 Torr,提取的原子氢离子电流的转换速率仅等于10 mka / mks。用于在0.5.10的压力下增加原子氢和氙的该值气体混合物 -3 Torr或分子氢气压力为10 -3 利用托到原子氢。这导致提取提取的原子氢离子电流的转换速率与氙和20mKa / mks的100 mka / mks,具有分子氢。

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