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首页> 外文期刊>Plasma Sources Science & Technology >Studies of plasma breakdown and electron heating on a 14 GHz ECR ion source through measurement of plasma bremsstrahlung
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Studies of plasma breakdown and electron heating on a 14 GHz ECR ion source through measurement of plasma bremsstrahlung

机译:通过测量等离子体致辐射研究14 GHz ECR离子源上的等离子体击穿和电子加热

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摘要

Temporal evolution of plasma bremsstrahlung emitted by a 14 GHz electron cyclotron resonance ion source (ECRIS) operated in pulsed mode is presented in the energy range 1.5-400 keV with 100 νs resolution. Such a high temporal resolution together with this energy range has never been measured before with an ECRIS. Data are presented as a function of microwave power, neutral gas pressure, magnetic field configuration and seed electron density. The saturation time of the bremsstrahlung count rate is almost independent of the photon energy up to 100 keV and exhibits similar characteristics with the neutral gas balance. The average photon energy during the plasma breakdown is significantly higher than that during the steady state and depends strongly on the density of seed electrons. The results are consistent with a theoretical model describing the evolution of the electron energy distribution function during the preglow transient.
机译:在能量范围1.5-400 keV,分辨率为100 s的情况下,介绍了以脉冲模式运行的14 GHz电子回旋共振离子源(ECRIS)发射的等离子体致辐射的时间演化。如此高的时间分辨率和该能量范围以前从未用ECRIS进行过测量。数据表示为微波功率,中性气压,磁场配置和种子电子密度的函数。致辐射计数率的饱和时间几乎与高达100 keV的光子能量无关,并且在中性气体平衡下表现出相似的特性。等离子体击穿期间的平均光子能量明显高于稳态期间的平均光子能量,并且在很大程度上取决于种子电子的密度。结果与描述预发光瞬变期间电子能量分布函数的演变的理论模型相符。

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