Effects of spectral resolution on simple magnetic field diagnostics of the Mg II h & k lines
arXiv:2208.07507 · doi:10.3847/1538-4357/ac886f
Abstract
We study the effects of finite spectral resolution on the magnetic field values retrieved through the weak field approximation (WFA) from the cores of the Mg II h & k lines. The retrieval of the line-of-sight (LOS) component of the magnetic field, , from synthetic spectra generated in a uniformly magnetized FAL-C atmosphere are accurate when restricted to the inner lobes of Stokes V. As we degrade the spectral resolution, partial redistribution (PRD) effects, that more prominently affect the outer lobes of Stokes V, are brought into the line core through spectral smearing, degrading the accuracy of the WFA and resulting in an inference bias, which is more pronounced the poorer the resolution. When applied to a diverse set of spectra emerging from a sunspot simulation, we find a good accuracy in the retrieved when comparing it to the model value at the height where the optical depth in the line core is unity. The accuracy is preserved up to field strengths of B~1500 G. Limited spectral resolution results in a small bias toward weaker retrieved fields. The WFA for the transverse component of the magnetic field is also evaluated. Reduced spectral resolution degrades the accuracy of the inferences because spectral mixing results in the line effectively probing deeper layers of the atmosphere.
Accepted for publication in ApJ
References in corpus (14)
- Extension of the MURaM radiative MHD code for coronal simulations
- Non-LTE inversions of the Mg II h&k and UV triplet lines
- Recovering Thermodynamics from Spectral Profiles observed by IRIS: A Machine and Deep Learning Approach
- Magnetic Diagnostics of the Solar Chromosphere with the Mg II h-k Lines
- Mapping Solar Magnetic Fields from the Photosphere to the Base of the Corona
- First Detection of Chromospheric Magnetic Field Changes During an X1-Flare
- The magnetic sensitivity of the Mg ii k line to the joint action of Hanle, Zeeman and magneto-optical effects
- Spectro-polarimetric Imaging Reveals Helical Magnetic Fields in Solar Prominence Feet
- TIC: A Stokes inversion code for scattering polarization with partial frequency redistribution and arbitrary magnetic fields
- Measuring the magnetic origins of solar flares, CMEs and Space Weather
- Non-LTE inversions of a confined X2.2 flare: I. Vector magnetic field in the photosphere and chromosphere
- A Note on the Radiative and Collisional Branching Ratios in Polarized Radiation Transport with Coherent Scattering
- Magnetic field inference in active region coronal loops using coronal rain clumps
- Temporal evolution of short-lived penumbral microjets
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