Large-Scale Spatial Cross-Calibration of Hinode/SOT-SP and SDO/HMI
Abstract
We investigate the cross-calibration of the Hinode/SOT-SP and SDO/HMI instrument meta-data, specifically the correspondence of the scaling and pointing information. Accurate calibration of these datasets gives the correspondence needed by inter-instrument studies and learning-based magnetogram systems, and is required for physically-meaningful photospheric magnetic field vectors. We approach the problem by robustly fitting geometric models on correspondences between images from each instrument's pipeline. This technique is common in computer vision, but several critical details are required when using scanning slit spectrograph data like Hinode/SOT-SP. We apply this technique to data spanning a decade of the Hinode mission. Our results suggest corrections to the published Level 2 Hinode/SOT-SP data. First, an analysis on approximately 2,700 scans suggests that the reported pixel size in Hinode/SOT-SP Level 2 data is incorrect by around 1%. Second, analysis of over 12,000 scans show that the pointing information is often incorrect by dozens of arcseconds with a strong bias. Regression of these corrections indicates that thermal effects have caused secular and cyclic drift in Hinode/SOT-SP pointing data over its mission. We offer two solutions. First, direct co-alignment with SDO/HMI data via our procedure can improve alignments for many Hinode/SOT-SP scans. Second, since the pointing errors are predictable, simple post-hoc corrections can substantially improve the pointing. We conclude by illustrating the impact of this updated calibration on derived physical data products needed for research and interpretation. Among other things, our results suggest that the pointing errors induce a hemispheric bias in estimates of radial current density.
Keywords
Cite
@article{arxiv.2209.15036,
title = {Large-Scale Spatial Cross-Calibration of Hinode/SOT-SP and SDO/HMI},
author = {David F. Fouhey and Richard E. L. Higgins and Spiro K. Antiochos and Graham Barnes and Marc L. DeRosa and J. Todd Hoeksema and K. D. Leka and Yang Liu and Peter W. Schuck and Tamas I. Gombosi},
journal= {arXiv preprint arXiv:2209.15036},
year = {2023}
}
Comments
Under revisions at ApJS