Spectropolarimetry for Discerning Geometry and Structure in Circumstellar Media of Hot Massive Stars

Fuente: arXiv
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Main Authors: Ignace, Richard, Gayley, Kenneth, Casini, Roberto, Scowen, Paul, Erba, Christiana, Drake, Jeremy
Format: Preprint
Published: 2025
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author Ignace, Richard
Gayley, Kenneth
Casini, Roberto
Scowen, Paul
Erba, Christiana
Drake, Jeremy
author_facet Ignace, Richard
Gayley, Kenneth
Casini, Roberto
Scowen, Paul
Erba, Christiana
Drake, Jeremy
contents Spectropolarimetric techniques are a mainstay of astrophysical inquiry, ranging from Solar System objects to the Cosmic Background Radiation. This review highlights applications of stellar polarimetry for massive hot stars, particularly in the context of ultraviolet (UV) spaceborne missions. The prevalence of binarity in the massive star population and uncertainties regarding the degree of rotational criticality among hot stars raises important questions about stellar interactions, interior structure, and even the lifetimes of evolutionary phases. These uncertainties have consequences for stellar population synthesis calculations. Spectropolarimetry is a key tool for extracting information about stellar and binary geometries. We review methodologies involving electron scattering in circumstellar envelopes; gravity darkening from rapid rotation; spectral line effects including the (a) "line effect", (b) Ohman effect, and (c) Hanle effect; and the imprint of interstellar polarization on measurements. Finally, we describe the Polstar UV spectropolarimetric SMEX mission concept as one means for employing these diagnostics to clarify the state of high rotation and its impacts for massive stars.
format Preprint
id arxiv_https___arxiv_org_abs_2504_02659
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spectropolarimetry for Discerning Geometry and Structure in Circumstellar Media of Hot Massive Stars
Ignace, Richard
Gayley, Kenneth
Casini, Roberto
Scowen, Paul
Erba, Christiana
Drake, Jeremy
Solar and Stellar Astrophysics
Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
Spectropolarimetric techniques are a mainstay of astrophysical inquiry, ranging from Solar System objects to the Cosmic Background Radiation. This review highlights applications of stellar polarimetry for massive hot stars, particularly in the context of ultraviolet (UV) spaceborne missions. The prevalence of binarity in the massive star population and uncertainties regarding the degree of rotational criticality among hot stars raises important questions about stellar interactions, interior structure, and even the lifetimes of evolutionary phases. These uncertainties have consequences for stellar population synthesis calculations. Spectropolarimetry is a key tool for extracting information about stellar and binary geometries. We review methodologies involving electron scattering in circumstellar envelopes; gravity darkening from rapid rotation; spectral line effects including the (a) "line effect", (b) Ohman effect, and (c) Hanle effect; and the imprint of interstellar polarization on measurements. Finally, we describe the Polstar UV spectropolarimetric SMEX mission concept as one means for employing these diagnostics to clarify the state of high rotation and its impacts for massive stars.
title Spectropolarimetry for Discerning Geometry and Structure in Circumstellar Media of Hot Massive Stars
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2504.02659