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Measurement of Quantum Efficiency for Spacecraft Materials and Noise Reduction of Photoelectron Current Waveform

机译:用于航天器材料的量子效率和光电电流波形的降噪量

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Photoelectron emission is one of important factors in analyzing the spacecraft potential. In order to calculate the spacecraft potential in a space environment, it is necessary to know the characteristics of the quantum efficiency of the materials use in spacecraft design. Quantum efficiency measurements of spacecraft materials have been carried out by irradiating them with a pulsed monochromatic vacuum ultraviolet light using the beam line 20A of the High Energy Accelerator Research Organization (KEK-PF). The photoelectron current from cover glass materials was measured in the range 30-200 nm. A system for reducing the nois was designed that enabled accurate measurements in longer wavelength range (near 200 nm). The quantum efficiency characteristics of the cover glass materials had shown that for longer wavelength their value decreased from the maximum value 0.13 electrons/photons at 30 nm.
机译:光电子发射是分析航天器电位的重要因素之一。为了计算空间环境中的航天器电位,有必要了解在航天器设计中使用的材料量子效率的特征。通过使用高能加速器研究组织(Kek-PF)的梁线20a用脉冲单色真空紫外光照射它们来进行航天器材料的量子效率测量。从覆盖玻璃材料的光电子电流在30-200nm的范围内测量。用于减少NOIS的系统,设计了使能够在更长波长范围内(接近200nm)的精确测量。覆盖玻璃材料的量子效率特性表明,对于在30nm的最大值0.13电子/光子中,它们的值较长波长从最大值0.13电子。

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