Modeling Time-Variable Elemental Abundances in Coronal Loop Simulations

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Reep, Jeffrey W., Unverferth, John, Barnes, Will T., Chhabra, Sherry
Natura: Preprint
Pubblicazione: 2024
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866910539727241216
author Reep, Jeffrey W.
Unverferth, John
Barnes, Will T.
Chhabra, Sherry
author_facet Reep, Jeffrey W.
Unverferth, John
Barnes, Will T.
Chhabra, Sherry
contents Numerous recent X-ray observations of coronal loops in both active regions (ARs) and solar flares have shown clearly that elemental abundances vary with time. Over the course of a flare, they have been found to move from coronal values towards photospheric values near the flare peak, before slowly returning to coronal values during the gradual phase. Coronal loop models typically assume that the elemental abundances are fixed, however. In this work, we introduce a time-variable abundance factor into the 0D ebtel++ code that models the changes due to chromospheric evaporation in order to understand how this affects coronal loop cooling. We find that for strong heating events ($\gtrsim$ 1 erg s$^{-1}$ cm$^{-3}$), the abundances quickly tend towards photospheric values. For smaller heating rates, the abundances fall somewhere between coronal and photospheric values, causing the loop to cool more quickly than the time-fixed photospheric cases (typical flare simulations) and more slowly than time-fixed coronal cases (typical AR simulations). This suggests heating rates in quiescent AR loops no larger than $\approx 0.1$ erg s$^{-1}$ cm$^{-3}$ to be consistent with recent measurements of abundance factors $f \gtrsim 2$.
format Preprint
id arxiv_https___arxiv_org_abs_2406_04473
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Modeling Time-Variable Elemental Abundances in Coronal Loop Simulations
Reep, Jeffrey W.
Unverferth, John
Barnes, Will T.
Chhabra, Sherry
Solar and Stellar Astrophysics
Numerous recent X-ray observations of coronal loops in both active regions (ARs) and solar flares have shown clearly that elemental abundances vary with time. Over the course of a flare, they have been found to move from coronal values towards photospheric values near the flare peak, before slowly returning to coronal values during the gradual phase. Coronal loop models typically assume that the elemental abundances are fixed, however. In this work, we introduce a time-variable abundance factor into the 0D ebtel++ code that models the changes due to chromospheric evaporation in order to understand how this affects coronal loop cooling. We find that for strong heating events ($\gtrsim$ 1 erg s$^{-1}$ cm$^{-3}$), the abundances quickly tend towards photospheric values. For smaller heating rates, the abundances fall somewhere between coronal and photospheric values, causing the loop to cool more quickly than the time-fixed photospheric cases (typical flare simulations) and more slowly than time-fixed coronal cases (typical AR simulations). This suggests heating rates in quiescent AR loops no larger than $\approx 0.1$ erg s$^{-1}$ cm$^{-3}$ to be consistent with recent measurements of abundance factors $f \gtrsim 2$.
title Modeling Time-Variable Elemental Abundances in Coronal Loop Simulations
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2406.04473