A High-resolution, Inversion-Based Synoptic Study of Solar Granulation
arXiv:2505.00826 · doi:10.3847/1538-4357/add0ad
Abstract
The convectively driven, weakly magnetized regions of the solar photosphere dominate the Sun's surface at any given time, but the temporal variations of these quiet regions of the photosphere throughout the solar cycle are still not well known. To look for cycle-dependent changes in the convective properties of quiet Sun photosphere, we use high spatial and spectral resolution spectropolarimetric observations obtained by the Hinode Solar Optical Telescope (SOT) and apply the Spectropolarimetric Inversions Based on Response Functions (SIR) code to infer physical conditions in the lower solar photosphere. Using a homogeneous set of 49 datasets, all taken at disk center, we analyze the temperature stratification and the line-of-sight velocities of the granules and intergranules over a period of 15 years. We use a k-means clustering technique applied to the spectral profiles to segment the granules and intergranules based on both intensity and velocity. We also examine the profile bisectors of these different structures and compare these to past analyses. Our results show fairly constant properties over this period with no clear dependence on the solar cycle. We do, however, find a slight increase in the photospheric temperature gradient during the declining phase of the solar cycle. Our findings could have significant implications for understanding the coupling between the quiet Sun atmosphere and the global solar dynamo.
Accepted for publication to The Astrophysical Journal (ApJ); 21 pages, 10 figures
References in corpus (17)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Global Seismology of the Sun
- The intensity contrast of solar granulation: comparing Hinode SP results with MHD simulations
- Magnitudes and Timescales of Total Solar Irradiance Variability
- The origin of the reversed granulation in the solar photosphere
- Solar Irradiance Variability is Caused by the Magnetic Activity on the Solar Surface
- On the validity of the 630 nm Fe I nm lines for the magnetometry of the internetwork quiet Sun
- Comparison of inversion codes for polarized line formation in MHD simulations. I. Milne-Eddington codes
- Combining magneto-hydrostatic constraints with Stokes profiles inversions
- The influence of NLTE effects in Fe I lines on an inverted atmosphere I. 6301 A and 6302 A lines formed in 1D NLTE
- Height-dependent velocity structure of photospheric convection in granules and intergranular lanes with Hinode/SOT
- Interpretation of Solar Irradiance Monitor measurements through analysis of 3D MHD simulations
- Changes in granulation scales over the solar cycle seen with SDO/HMI and Hinode/SOT
- Solar-cycle and Latitude Variations in the Internetwork Magnetism
- Dynamics of the photosphere along the solar cycle from SDO/HMI