首页> 外文期刊>The Astrophysical Journal. Supplement Series >ABSOLUTE RADIOMETRIC CALIBRATION OF THE EUNIS-06 170–205 A CHANNEL AND CALIBRATION UPDATE FOR CORONAL DIAGNOSTIC SPECTROMETER/NORMAL-INCIDENCE SPECTROMETER
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ABSOLUTE RADIOMETRIC CALIBRATION OF THE EUNIS-06 170–205 A CHANNEL AND CALIBRATION UPDATE FOR CORONAL DIAGNOSTIC SPECTROMETER/NORMAL-INCIDENCE SPECTROMETER

机译:EUNIS-06 170-205的绝对放射线校准和冠状诊断光谱仪/正常入射光谱仪的通道和校准更新

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摘要

The Extreme-Ultraviolet Normal-Incidence Spectrograph sounding-rocket payload was flown on 2006 April 12 (EUNIS-06), carrying two independent imaging spectrographs covering wavebands of 300–370 A in first order and 170–205 A in second order, respectively. The absolute radiometric response of the EUNIS-06 long-wavelength (LW) channel was directly measured in the same facility used to calibrate Coronal Diagnostic Spectrometer (CDS) prior to the Solar and Heliospheric Observatory (SOHO) launch. Because the absolute calibration of the shortwavelength (SW) channel could not be obtained from the same lab configuration, we here present a technique to derive it using a combination of solar LW spectra and density- and temperature-insensitive line intensity ratios. The first step in this procedure is to use the coordinated, cospatial EUNIS and SOHO/CDS spectra to carry out an intensity calibration update for the CDS NIS-1 waveband, which shows that its efficiency has decreased by a factor about 1.7 compared to that of the previously implemented calibration. Then, theoretical insensitive line ratios obtained from CHIANTI allow us to determine absolute intensities of emission lines within the EUNIS SW bandpass from those of cospatial CDS/NIS-1 spectra after the EUNIS LW calibration correction. A total of 12 ratios derived from intensities of 5 CDS and 12 SW emission lines from Fe x to Fe xiii yield an instrumental response curve for the EUNIS-06 SW channel that matches well to a relative calibration which relied on combining measurements of individual optical components. Taking into account all potential sources of error, we estimate that the EUNIS-06 SW absolute calibration is accurate to ±20%.
机译:2006年4月12日(EUNIS-06)飞行了极紫外正入射谱仪的探空火箭有效载荷,携带了两个独立的成像谱仪,分别覆盖一阶300-370 A和二阶170-205 A的波段。在发射太阳和太阳圈天文台(SOHO)之前,在用于校准日冕诊断光谱仪(CDS)的同一设施中直接测量了EUNIS-06长波长(LW)通道的绝对辐射响应。由于无法从相同的实验室配置中获得短波(SW)通道的绝对校准,因此我们在此提出一种结合太阳LW光谱以及对密度和温度不敏感的线强度比的方法来导出短波(SW)通道的技术。此过程的第一步是使用协调的同空间EUNIS和SOHO / CDS光谱对CDS NIS-1波段进行强度校准更新,这表明与CDS NIS-1波段相比,其效率降低了约1.7倍。先前执行的校准。然后,从CHIANTI获得的理论上不敏感的线比率使我们能够根据EUNIS LW校准校正后的空间CDS / NIS-1光谱确定EUNIS SW带通内发射线的绝对强度。从5个CDS的强度和从Fe x到Fe xiii的12条SW发射谱线得出的总共12个比率得出EUNIS-06 SW通道的仪器响应曲线,该曲线与相对校准相匹配,后者依赖于结合单个光学组件的测量结果。考虑到所有潜在的误差源,我们估计EUNIS-06 SW绝对校准的精度为±20%。

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