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Queen's University Belfast

High resolution observations of magnetohydrodynamic shocks in the solar atmosphere

Abstract

dc:description.abstract

This thesis presents results detailing the study of magnetoacoustic shocks and more elusive forms of magnetohydrodynamic shocks in the solar atmosphere. Simultaneous slit-based spectro-polarimetry and spectral imaging observations of the chromospheric He I 10830 A and Ca ˚ II 8542 A lines is employed to examine fluctuations in the ˚ umbral magnetic field caused by the steepening of magneto-acoustic waves into umbral flashes. Following the application of modern inversion routines, evidence that umbral shock events cause expansion of the embedded magnetic field lines due to the increased adiabatic pressure is found. An adiabatic index, γ = 1.12 ± 0.01 is calculated, for chromospheric umbral locations. Examination of the vector magnetic field fluctuations perpendicular to the solar normal revealed changes up to ∼ 200 G at the locations of umbral flashes. Such transversal magnetic field fluctuations have not been described before. Through comparisons with non-linear force-free field extrapolations, we find that the perturbations of the transverse field components are oriented in the same direction as the quiescent field geometries. This implies that magnetic field enhancements produced by umbral flashes are directed along the motion path of the developing shock, hence producing relatively small changes, up to a maximum of ∼ 8 degrees, in the inclination and/or azimuthal directions of the magnetic field, highlighting that umbral flashes are able to modify the full vector magnetic field.<br/><br/>Chromospheric Ca II 8542 A spectropolarimetric data reveals elusive magnetohydro-dynamic shocks in sunspot umbrae. Inversion techniques are employed to uncover perturbations in the temperatures, line-of-sight velocities, and vector magnetic fields occurring across a range of optical depths synonymous with the shock formation. Classification of these non-linear signatures is carried out by comparing the observationallyderived slow, fast, and Alfven shock solutions to the theoretical Rankine-Hugoniot relations. When employing over 200 000 independent measurements, the Alfven (intermediate) shock solution provides the closest match between theory and observations at optical depths of log10 τ = −4, consistent with a geometric height at the boundary between the upper photosphere and lower chromosphere. This work uncovers first-time evidence of the manifestation of chromospheric intermediate shocks in sunspot umbrae, providing a new method for the potential thermalization of wave energy in a range of magnetic structures, including pores, magnetic flux ropes, and magnetic bright points.

Degree

thesis:*
Name dc:type.qualificationname
Doctor of Philosophy
Level dc:type.qualificationlevel
Doctoral Thesis
Grantor dc:publisher.institution
Queen's University Belfast
Year dc:date.issued
2020

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Houston, Scott
Advisors dc:contributor.advisor
  • Mathioudakis, Michail
  • Jess, David

Rights

Language dc:language
eng

Identifiers

dc:identifier.*
Identifier
oai:pure.qub.ac.uk/portal:studenttheses/6bcd473b-c23a-4f20-ad54-f511e17cae42
OAI identifier oai:identifier
oai:pure.qub.ac.uk/portal:studenttheses/6bcd473b-c23a-4f20-ad54-f511e17cae42

Chain of custody

source
Harvested from
Queen's University Belfast
Base URL
pureadmin.qub.ac.uk/ws/oai
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Houston, Scott. High resolution observations of magnetohydrodynamic shocks in the solar atmosphere. Doctoral Thesis thesis, Queen's University Belfast, 2020. https://pure.qub.ac.uk/en/studentTheses/6bcd473b-c23a-4f20-ad54-f511e17cae42