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Pre-emergence Signatures Of Horizontal Divergent Flows In Solar Active Regions

Solar and Stellar Astrophysics 2022-12-07 v1

Abstract

Solar active regions (ARs) play a fundamental role in driving many of the geo-effective eruptions which propagate into the Solar System. However, we are still unable to consistently predict where and when ARs will occur across the solar disk by identifying pre-emergence signatures in observables such as the Doppler velocity (without using Helioseismic methods). Here we aim to determine the earliest time at which pre-emergence signatures, specifically the Horizontal Divergent Flow (HDF), can be confidently detected using data from the Solar Dynamics Observatory's Helioseismic and Magnetic Imager (SDO/HMI). Initially, we follow previous studies using the thresholding method, which searches for significant increases in the number of pixels that display a specific line-of-sight velocity. We expand this method to more velocity windows and conduct a basic parameter study investigating the effect of cadence on the inferred results. Our findings agree with previous studies with 37.537.5% of ARs displaying a HDF, with average lead times between the HDF and flux emergence of 5858 minutes. We present a new potential signature of flux emergence which manifests as cadence-independent transient disruptions to the amplitudes of multiple velocity windows and recover potential pre-emergence signatures for 10 of the 16 ARs studied, with lead times of 60-156 minutes. Several effects can influence both the estimated times of both HDF and flux emergence suggesting that one may need to combine Doppler and magnetic field data to get a reliable indicator of continued flux emergence.

Keywords

Cite

@article{arxiv.2210.06276,
  title  = {Pre-emergence Signatures Of Horizontal Divergent Flows In Solar Active Regions},
  author = {T. Rees-Crockford and C. J. Nelson and M. Mathioudakis},
  journal= {arXiv preprint arXiv:2210.06276},
  year   = {2022}
}

Comments

19 Pages, 8 Figures, 2 Tables, 2 Supplemental Figure Sets