SIMBAD references

2017ApJ...842...19D - Astrophys. J., 842, 19-19 (2017/June-2)

Non-Maxwellian analysis of the transition-region line profiles observed by the Interface Region Imaging Spectrograph.

DUDIK J., POLITO V., DZIFCAKOVA E., DEL ZANNA G. and TESTA P.

Abstract (from CDS):

We investigate the nature of the spectral line profiles for transition-region (TR) ions observed with the Interface Region Imaging Spectrograph (IRIS). In this context, we analyzed an active-region observation performed by IRIS in its 1400 Å spectral window. The TR lines are found to exhibit significant wings in their spectral profiles, which can be well fitted with a non-Maxwellian κ distribution. The fit with a κ distribution can perform better than a double-Gaussian fit, especially for the strongest line, Si IV 1402.8 Å. Typical values of κ found are about 2, occurring in a majority of spatial pixels where the TR lines are symmetric, i.e., the fit can be performed. Furthermore, all five spectral lines studied (from Si IV, O IV, and S IV) appear to have the same full-width at half-maximum irrespective of whether the line is an allowed or an intercombination transition. A similar value of κ is obtained for the electron distribution by the fitting of the line intensities relative to Si IV 1402.8 Å, if photospheric abundances are assumed. The κ distributions, however, do not remove the presence of non-thermal broadening. Instead, they actually increase the non-thermal width. This is because, for κ distributions, TR ions are formed at lower temperatures. The large observed non-thermal width lowers the opacity of the Si IV line sufficiently enough for this line to become optically thin.

Abstract Copyright: © 2017. The American Astronomical Society. All rights reserved.

Journal keyword(s): line: profiles - methods: data analysis - radiation mechanisms: non-thermal - Sun: transition region - Sun: UV radiation - Sun: UV radiation

Simbad objects: 3

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