A First Comparison of Millimeter Continuum and Mg II Ultraviolet Line Emission from the Solar Chromosphere
arXiv:1706.04532 · doi:10.3847/2041-8213/aa844c
Abstract
We present joint observations of the Sun by the Atacama Large Millimeter/submillimeter Array (ALMA) and the Interface Region Imaging Spectrograph (IRIS). The observations were made of a solar active region on 2015 December 18 as part of the ALMA science verification effort. A map of the Sun's continuum emission of size was obtained by ALMA at a wavelength of 1.25 mm (239 GHz) using mosaicing techniques. A contemporaneous map of size was obtained in the Mg II h doublet line at 2803.5Å by IRIS. Both mm/submm continuum emission and ultraviolet (UV) line emission are believed to originate from the solar chromosphere and both have the potential to serve as powerful and complementary diagnostics of physical conditions in this poorly understood layer of the solar atmosphere. While a clear correlation between mm- brightness temperature and the Mg II h line radiation temperature is observed the slope is , perhaps as a result of the fact that these diagnostics are sensitive to different parts of the chromosphere and/or the Mg II h line source function includes a scattering component. There is a significant offset between the mean (1.25 mm) and mean (Mg II), the former being greater than the latter. Partitioning the maps into "sunspot", "quiet regions", and "plage regions" we find that the slope of the scatter plots between the IRIS Mg II h line and the ALMA brightness temperature is 0.4 (sunspot), 0.56 (quiet regions), and 0.66 (plage regions). We suggest that this change may be caused by the regional dependence of the formation heights of the IRIS and ALMA diagnostics, and/or the increased degree of coupling between the UV source function and the local gas temperature in the hotter, denser gas in plage regions.
8 pages, 2 figures
References in corpus (3)
Cited by in corpus (7)
- The solar chromosphere at millimetre and ultraviolet wavelengths. I. Radiation temperatures and a detailed comparison
- Solar ALMA observations: constraining the chromosphere above sunspots
- Observations of solar chromospheric oscillations at 3 mm with ALMA
- Transient brightenings in the quiet Sun detected by ALMA at 3 mm
- First Spectral Analysis of a Solar Plasma Eruption Using ALMA
- Incoherent Solar Radio Emission
- The multi-thermal chromosphere: inversions of ALMA and IRIS data