Preprint
New Frontiers in the Study of Magnetic Massive Stars with the Habitable Worlds Observatory
ArXiv.org
Cornell University
07/19/2025
DOI: 10.48550/arxiv.2507.14441
Abstract
High-mass stars are notable for several reasons: they are characterized by strong winds, which inject momentum and enriched material into their surroundings, and die spectacularly as supernovae, leaving behind compact remnants and heavy elements (such as those that make life on Earth possible). Despite their relative rarity, they play a disproportionate role in the evolution of the galaxies that host them, and likely also played a significant role in the early days of the Universe. A subset ($\sim$10\%) of these stars was also found to host magnetic fields on their surface. These fields impact their evolution, and may lead to exotic physics (e.g., heavy stellar-mass black holes, pair-instability supernovae, magnetars, etc.). However, the detection and measurement of magnetic fields is limited, due to current instrumentation, to nearby massive stars in the Milky Way. To truly understand how magnetism arises in massive stars, and what role it might have played in earlier stages of our Universe, we require next-generation hardware, such as the proposed near-infrared-to-ultraviolet spectropolarimeter Pollux, on the Habitable Worlds Observatory (HWO). In this contribution, we detail how Pollux @ HWO will enable new frontiers in the study of magnetic massive stars, delivering results that will profoundly impact the fields of stellar formation, stellar evolution, compact objects, and stellar feedback.
Details
- Title: Subtitle
- New Frontiers in the Study of Magnetic Massive Stars with the Habitable Worlds Observatory
- Creators
- Alexandre David-UrazVéronique PetitCoralie NeinerJean-Claude BouretYaël NazéChristiana ErbaMiriam GarciaKenneth GayleyRichard IgnaceJiři KrtičkaHugues SanaNicole St-LouisAsif ud-Doula
- Resource Type
- Preprint
- Publication Details
- ArXiv.org
- DOI
- 10.48550/arxiv.2507.14441
- ISSN
- 2331-8422
- Publisher
- Cornell University; Ithaca, New York
- Language
- English
- Date posted
- 07/19/2025
- Academic Unit
- Physics and Astronomy
- Record Identifier
- 9984865309702771
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