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91.
R. C. Wiens D. S. Burnett C. M. Hohenberg A. Meshik V. Heber A. Grimberg R. Wieler D. B. Reisenfeld 《Space Science Reviews》2007,130(1-4):161-171
The Genesis mission returned samples of solar wind to Earth in September 2004 for ground-based analyses of solar-wind composition,
particularly for isotope ratios. Substrates, consisting mostly of high-purity semiconductor materials, were exposed to the
solar wind at L1 from December 2001 to April 2004. In addition to a bulk sample of the solar wind, separate samples of coronal
hole (CH), interstream (IS), and coronal mass ejection material were obtained. Although many substrates were broken upon landing
due to the failure to deploy the parachute, a number of results have been obtained, and most of the primary science objectives
will likely be met. These objectives include He, Ne, Ar, Kr, and Xe isotope ratios in the bulk solar wind and in different
solar-wind regimes, and 15N/14N and 18O/17O/16O to high precision. The greatest successes to date have been with the noble gases. Light noble gases from bulk solar wind
and separate solar-wind regime samples have now been analyzed. Helium results show clear evidence of isotopic fractionation
between CH and IS samples, consistent with simplistic Coulomb drag theory predictions of fractionation between the photosphere
and different solar-wind regimes, though fractionation by wave heating is also a possible explanation. Neon results from closed
system stepped etching of bulk metallic glass have revealed the nature of isotopic fractionation as a function of depth, which
in lunar samples have for years deceptively suggested the presence of an additional, energetic component in solar wind trapped
in lunar grains and meteorites. Isotope ratios of the heavy noble gases, nitrogen, and oxygen are in the process of being
measured. 相似文献
92.
TSIEN Pei-hsin 《中国航空学报》2006,19(Z1)
The changes of DC characteristics of SiGe HBT after being submitted to γ-ray irradiation of 700 krad, 7 000 krad and 10 000 krad were compared to those of Si BJT. Generally speaking, Ib and Ib–Ib0 increase with the doses increasing. For SiGe HBT, with the doses increasing, Ic and Ic–Ic0 as well as the related changes of the current gain (β) will decrease at higher Vbe, while for Si BJT, with the doses increasing, after irradiation, Ib and Ic–Ic0 increase; β and its related changes also decrease with their differences, however, tending to be very small at high doses of 7 000 krad and 10 000 krad. Moreover, given the same doses, the decreases of β are much larger than SiGe HBT, which shows that SiGe HBT’s anti-radiation performance proves to be better than Si BJT. Still, in SiGe HBT, some strange phe-nomena were observed: Ic–Ic0 will increase after the radiation of 7 000 krad in less than 0.65 V and as will β in less than 0.75 V. The mechanism of radiation-induced change in DC characteristics was also discussed. 相似文献
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为解决太阳能无人机(UAV)总体设计中任务需求表达模糊、技术指标重要度排序决策困难的问题,提出了基于模糊质量功能展开(FQFD)的太阳能无人机总体设计指标排序方法。该方法在传统质量功能展开(QFD)质量屋的基础上,引入三角模糊数,表征任务需求的不确定性和模糊性;在模糊隶属度函数未知的情况下,采用α加权修正水平截集去模糊化方法计算技术指标重要度,获得技术指标重要度排序,为总体设计优化决策提供依据。最后以长航时太阳能无人机的总体设计为例,对任务需求—工程特性—技术指标的两级质量屋模型进行计算分析,得到续航能力、巡航高度、动力系统效率、巡航速度和气动效率是太阳能无人机最重要的5个技术指标的结果。此方法客观性较强,可处理复杂的系统不确定性,为太阳能无人机总体方案设计及决策应用提供参考依据。 相似文献
95.
Almost all theoretical and numerical models for the modulation of cosmic ray in the heliosphere are based on Parker's transport equation which contains all the important basic physical processes. The relative importance of the various mechanisms is however not established and may vary significantly over 22 years. The simultaneous measurements of solar wind parameters, heliospheric magnetic field properties and cosmic rays over a wide range of energies and positions in the heliosphere have brought the realization that modulation is much more complicated than what the original drift models predicted. In the process the sophistication of models based on solving Parker's equation has increased by orders of magnitude. A short review of the global modulation of cosmic rays is given from a theoretical and modelling point of view. 相似文献
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蓝宝石光学窗口在空间环境服役时,将会受到不同射线(如γ射线、X射线)以及离子流(如电子、质子等)的辐照作用,使其光学性质及结构发生变化,影响使用性能.为模拟空间环境,采用60Co源及电子流对蓝宝石进行辐照,研究了蓝宝石经辐照后的光学性能及结构变化,测试了蓝宝石辐照前后的表面粗糙度以及吸收光谱和荧光光谱变化.AFM实验表明,γ射线辐照对蓝宝石表面粗糙度几乎没有影响,而电子流辐照使得蓝宝石表面粗糙度增加.吸收光谱结果显示,蓝宝石经射γ线及电子流辐照后在紫外可见波段表现出较强的吸收,出现206,238,300和330 nm等吸收峰.荧光光谱发现335 nm和410 nm等荧光发光峰.曩后分析了色心产生原因,计算了辐照前后的色心浓度. 相似文献
99.
采用聚偏氟乙烯和丙烯酸酯制备了一种具有互穿聚合物网络结构的凝胶聚合物电解质,并将其应用于染料敏化太阳能电池. 通过FTIR,SEM以及电化学分析等对具有多孔结构的聚合物电解质进行了表征,考察了不同交联单体及不同聚偏氟乙烯/丙烯酸酯质量比对准固态聚合物电解质性能的影响.结果表明,选择合适的交联单体和适宜的交联度可有效提高聚合物膜的孔隙率、吸液量和相应电解质的电化学特性.用聚偏氟乙烯/聚乙二醇二甲基丙烯酸酯互穿聚合物网络结构的电解质组装染料敏化太阳能电池, 在100 mW/cm2模拟光照下,短路电流Isc和开路电压Voc分别为8.476 mA·cm-2和0.674 V, 电池光电转换效率达到2.710%. 相似文献
100.