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   	<dc:title>Ultraviolet spectroscopy reveals a hot and luminous companion to the Be star+black hole candidate MWC 656</dc:title>
   	<dc:creator>Müller-Horn, Johanna</dc:creator>
   	<dc:creator>Ramachandran, Varsha</dc:creator>
   	<dc:creator>El-Badry, Kareem</dc:creator>
   	<dc:creator>Sander, Andreas A.C.</dc:creator>
   	<dc:creator>Bodensteiner, Julia K</dc:creator>
   	<dc:creator>Gies, Douglas R.</dc:creator>
   	<dc:creator>Götberg, Ylva Louise Linsdotter ; https://orcid.org/0000-0002-6960-6911</dc:creator>
   	<dc:creator>Rivinius, Thomas</dc:creator>
   	<dc:creator>Shenar, Tomer</dc:creator>
   	<dc:creator>Schösser, Elisa C.</dc:creator>
   	<dc:creator>Wang, Luqian</dc:creator>
   	<dc:creator>Bieryla, Allyson</dc:creator>
   	<dc:creator>Buchhave, Lars A.</dc:creator>
   	<dc:creator>Latham, David W.</dc:creator>
   	<dc:subject>ddc:520</dc:subject>
   	<dc:description>The Galactic Be star binary MWC 656 was long considered the only known Be star+black hole (BH) system, making it a critical
benchmark for models of massive binary evolution and for the expected X-ray emission of Be+BH binaries. However, recent dynamical measurements cast doubt on the presence of a BH companion. We present new multi-epoch ultraviolet spectroscopy from the
Hubble Space Telescope, combined with high-resolution optical spectra, to reassess the nature of the companion. The far-ultraviolet
spectra reveal high-ionisation features – including prominent N v and He ii lines – which are absent in the spectra of normal Be stars
and are indicative of a hot, luminous companion. Spectral modelling shows that these features cannot originate from the Be star or
from an accretion disc around a compact object. Instead, we find that the data are best explained by a hot (Teff ≈ 85 kK), compact,
hydrogen-deficient star with strong wind signatures, consistent with an intermediate-mass stripped star. Our revised orbital solution
and composite spectroscopic modelling yield a companion mass of M2 = 1.48+0.55
−0.46 M, definitively ruling out a BH and disfavouring a
white dwarf. MWC 656 thus joins the growing class of Be + stripped star binaries. The system’s unusual properties – including a high
companion temperature and wind strength – extend the known parameter space of such binaries. The continued absence of confirmed
OBe+BH binaries in the Galaxy highlights a growing tension with population synthesis models.</dc:description>
   	<dc:publisher>EDP Sciences</dc:publisher>
   	<dc:date>2026</dc:date>
   	<dc:type>info:eu-repo/semantics/article</dc:type>
   	<dc:type>doc-type:article</dc:type>
   	<dc:type>article</dc:type>
   	<dc:type>http://purl.org/coar/resource_type/c_2df8fbb1</dc:type>
   	<dc:identifier>https://research-explorer.ista.ac.at/record/22816</dc:identifier>
   	<dc:identifier>https://research-explorer.ista.ac.at/download/22816/22891</dc:identifier>
   	<dc:source>Müller-Horn J, Ramachandran V, El-Badry K, et al. Ultraviolet spectroscopy reveals a hot and luminous companion to the Be star+black hole candidate MWC 656. &lt;i&gt;Astronomy &amp;#38; Astrophysics&lt;/i&gt;. 2026;708. doi:&lt;a href=&quot;https://doi.org/10.1051/0004-6361/202557960&quot;&gt;10.1051/0004-6361/202557960&lt;/a&gt;</dc:source>
   	<dc:language>eng</dc:language>
   	<dc:relation>info:eu-repo/semantics/altIdentifier/doi/10.1051/0004-6361/202557960</dc:relation>
   	<dc:relation>info:eu-repo/semantics/altIdentifier/issn/0004-6361</dc:relation>
   	<dc:relation>info:eu-repo/semantics/altIdentifier/e-issn/1432-0746</dc:relation>
   	<dc:relation>info:eu-repo/semantics/altIdentifier/arxiv/2601.14403</dc:relation>
   	<dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
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