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首页> 外文期刊>Solar Physics >Temperature Response of the 171 Å Passband of the SWAP Imager on PROBA2, with a Comparison to TRACE, SOHO, STEREO, and SDO
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Temperature Response of the 171 Å Passband of the SWAP Imager on PROBA2, with a Comparison to TRACE, SOHO, STEREO, and SDO

机译:与TRACE,SOHO,STEREO和SDO相比,PROBA2上SWAP成像仪的171Å通带的温度响应

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We calculated the temperature response of the 171 Å passbands of the Sun Watcher using APS detectors and image Processing (SWAP) instrument onboard the PRoject for OnBoard Autonomy 2 (PROBA2) satellite. These results were compared to the temperature responses of the Extreme Ultraviolet Imaging Telescope (EIT) onboard the Solar and Heliospheric Observatory (SOHO), the Transition Region and Coronal Explorer (TRACE), the twin Extreme Ultraviolet Imagers (EUVI) onboard the Solar TErrestrial RElations Observatory (STEREO) A and B spacecraft, and the Atmospheric Imaging Assembly (AIA) onboard the Solar Dynamics Observatory (SDO). Multiplying the wavelength-response functions for each instrument by a series of isothermal synthetic spectra and integrating over the range 165 – 195 Å produced temperature-response functions for the six instruments. Each temperature response was then multiplied by sample differential emission-measure functions for four different solar conditions. For any given plasma condition (e.g. quiet Sun, active region), it was found that the overall variation with temperature agreed remarkably well across the six instruments, although the wavelength responses for each instrument have some distinctly different features. Deviations were observed, however, when we compared the response of any one instrument to different solar conditions, particularly for the case of solar flares.
机译:我们使用PRoject for OnBoard Autonomy 2(PROBA2)卫星上的APS检测器和图像处理(SWAP)仪器计算了Sun Watcher的171Å通带的温度响应。将这些结果与太阳和日球天文台(SOHO)上的极紫外成像望远镜(EIT),过渡区和日冕探测器(TRACE),太阳地球相关仪上的双极紫外成像仪(EUVI)的温度响应进行了比较。太阳动力天文台(SDO)上的天文台(STEREO)A和B航天器,以及大气成像组件(AIA)。将每台仪器的波长响应功能与一系列等温合成光谱相乘,并在165 –195Å范围内进行积分,从而为六台仪器产生了温度响应功能。然后,将每种温度响应乘以针对四个不同太阳条件的样本差分发射测量函数。对于任何给定的等离子体条件(例如,安静的太阳,活动区域),尽管每种仪器的波长响应具有明显不同的特征,但发现六种仪器的温度总体变化非常一致。但是,当我们比较任何一种仪器对不同太阳条件的响应时,都观察到偏差,特别是在太阳耀斑的情况下。

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