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首页> 外文期刊>IEEE Transactions on Plasma Science >Total Electron Emission Yield of Solar Cell Coverglass and Optical Solar Reflector
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Total Electron Emission Yield of Solar Cell Coverglass and Optical Solar Reflector

机译:太阳能电池盖玻片和光学太阳反射镜的总电子发射率

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Electron-induced secondary electron (SE) emission from space insulating materials is a very important factor in understanding spacecraft charging behavior. Because of the injection of primary electrons (PEs) and the emission of SEs in the surface layer of insulating materials, the target surface can be either negatively or positively charged. In the conventional measurement methods, a single short, low-density pulsed e-beam, charge neutralization using low energy flood e-gun and UV light, and charge dissipation by heating is used. In this paper, a pulsed scanning method for the total electron emission yield measurement of insulating, semiconducting or conducting solid materials is proposed. A total electron detector with large hollow space and insulating spacer was designed, and a pulsed yield scanning measurement system was developed. This method can avoid influence from the charged surface of the insulating material. Using the system, the total SE emission yields of 200 nm thick Au coating on glass, and 11 kinds of solar cell coverglasses and optical solar reflectors produced by Qioptiq have been reported, as induced by a 30 $mu{rm s}$ pulse of PEs with ${sim}{rm 20}~{rm nA}$ incident beam current and energies up to 2500 eV.
机译:来自太空绝缘材料的电子感应二次电子(SE)发射是了解航天器充电行为的一个非常重要的因素。由于在绝缘材料的表面层中注入了一次电子(PEs)并发射了SEs,因此目标表面可以带负电或带正电。在传统的测量方法中,使用单个短的,低密度的脉冲电子束,使用低能泛光电子枪和UV光的电荷中和以及通过加热产生的电荷消散。本文提出了一种脉冲扫描方法,用于测量绝缘,半导体或导电固体材料的总电子发射率。设计了具有大中空空间和绝缘间隔的全电子探测器,并开发了脉冲屈服扫描测量系统。该方法可以避免绝缘材料的带电表面的影响。使用该系统,据报道,由Qioptiq生产的11种太阳能电池盖玻片和光学太阳能反射器的总SE发射量为200 nm厚的金镀层,这是由30μm{rm s} $脉冲引起的。具有$ {sim} {rm 20}〜{rm nA} $入射光束电流和高达2500 eV能量的PE。

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