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模拟空间辐射对选定光学材料的影响。

Effect of simulated space radiation on selected optical materials.

作者信息

Nicoletta C A, Eubanks A G

出版信息

Appl Opt. 1972 Jun 1;11(6):1365-70. doi: 10.1364/AO.11.001365.

Abstract

The effect of simulated Nimbus spacecraft orbital (1100 km, circular, and polar) radiation on wide-band-pass glass filters, narrow-bandpass thin-film interference filters, and several fused silicas was determined by transmittance measurements over the 200-3400-nm wavelength region. No changes were observed in the filters, which were shielded with fused silica during irradiation, after exposure to a 1-yr equivalent orbital dose of electrons, nor were changes observed in the fused silicas after the same electron exposure plus a 1-yr equivalent dose of protons. Exposure to a (1/2)-yr equivalent dose of solar uv radiation, however, caused a significant degradation in the transmittance of two uv-transmitting interference filters but had no effect on two colored glass filters that transmitted in the visible and near-ir regions. As a result of the uv exposure, the fused silicas exhibited losses of several percent over the 200-300-nm wavelength region.

摘要

通过在200 - 3400纳米波长范围内进行透过率测量,确定了模拟的雨云号航天器轨道(1100千米,圆形,极地)辐射对宽带通玻璃滤光片、窄带通薄膜干涉滤光片以及几种熔融石英的影响。在照射期间用熔融石英屏蔽的滤光片,在接受相当于1年轨道剂量的电子照射后,未观察到变化;在相同电子照射加上相当于1年剂量的质子照射后,熔融石英也未观察到变化。然而,暴露于相当于半年剂量的太阳紫外线辐射后,两个紫外线透过干涉滤光片的透过率显著下降,但对在可见光和近红外区域透光的两个彩色玻璃滤光片没有影响。由于紫外线暴露,熔融石英在200 - 300纳米波长范围内的透过率损失了百分之几。

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