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  1. Artikel ; Online: Thermonuclear explosions on neutron stars reveal the speed of their jets.

    Russell, Thomas D / Degenaar, Nathalie / van den Eijnden, Jakob / Maccarone, Thomas / Tetarenko, Alexandra J / Sánchez-Fernández, Celia / Miller-Jones, James C A / Kuulkers, Erik / Del Santo, Melania

    Nature

    2024  Band 627, Heft 8005, Seite(n) 763–766

    Abstract: Relativistic jets are observed from accreting and cataclysmic transients throughout the Universe, and have a profound impact on their ... ...

    Abstract Relativistic jets are observed from accreting and cataclysmic transients throughout the Universe, and have a profound impact on their surroundings
    Sprache Englisch
    Erscheinungsdatum 2024-03-27
    Erscheinungsland England
    Dokumenttyp Journal Article
    ZDB-ID 120714-3
    ISSN 1476-4687 ; 0028-0836
    ISSN (online) 1476-4687
    ISSN 0028-0836
    DOI 10.1038/s41586-024-07133-5
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  2. Artikel ; Online: Cygnus X-1 contains a 21-solar mass black hole-Implications for massive star winds.

    Miller-Jones, James C A / Bahramian, Arash / Orosz, Jerome A / Mandel, Ilya / Gou, Lijun / Maccarone, Thomas J / Neijssel, Coenraad J / Zhao, Xueshan / Ziółkowski, Janusz / Reid, Mark J / Uttley, Phil / Zheng, Xueying / Byun, Do-Young / Dodson, Richard / Grinberg, Victoria / Jung, Taehyun / Kim, Jeong-Sook / Marcote, Benito / Markoff, Sera /
    Rioja, María J / Rushton, Anthony P / Russell, David M / Sivakoff, Gregory R / Tetarenko, Alexandra J / Tudose, Valeriu / Wilms, Joern

    Science (New York, N.Y.)

    2021  Band 371, Heft 6533, Seite(n) 1046–1049

    Abstract: The evolution of massive stars is influenced by the mass lost to stellar winds over their lifetimes. These winds limit the masses of the stellar remnants (such as black holes) that the stars ultimately produce. We used radio astrometry to refine the ... ...

    Abstract The evolution of massive stars is influenced by the mass lost to stellar winds over their lifetimes. These winds limit the masses of the stellar remnants (such as black holes) that the stars ultimately produce. We used radio astrometry to refine the distance to the black hole x-ray binary Cygnus X-1, which we found to be [Formula: see text] kiloparsecs. When combined with archival optical data, this implies a black hole mass of 21.2 ± 2.2 solar masses, which is higher than previous measurements. The formation of such a high-mass black hole in a high-metallicity system (within the Milky Way) constrains wind mass loss from massive stars.
    Sprache Englisch
    Erscheinungsdatum 2021-02-18
    Erscheinungsland United States
    Dokumenttyp Journal Article ; Research Support, Non-U.S. Gov't
    ZDB-ID 128410-1
    ISSN 1095-9203 ; 0036-8075
    ISSN (online) 1095-9203
    ISSN 0036-8075
    DOI 10.1126/science.abb3363
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  3. Artikel ; Online: A rapidly changing jet orientation in the stellar-mass black-hole system V404 Cygni.

    Miller-Jones, James C A / Tetarenko, Alexandra J / Sivakoff, Gregory R / Middleton, Matthew J / Altamirano, Diego / Anderson, Gemma E / Belloni, Tomaso M / Fender, Rob P / Jonker, Peter G / Körding, Elmar G / Krimm, Hans A / Maitra, Dipankar / Markoff, Sera / Migliari, Simone / Mooley, Kunal P / Rupen, Michael P / Russell, David M / Russell, Thomas D / Sarazin, Craig L /
    Soria, Roberto / Tudose, Valeriu

    Nature

    2019  Band 569, Heft 7756, Seite(n) 374–377

    Abstract: Powerful relativistic jets are one of the main ways in which accreting black holes provide kinetic feedback to their surroundings. Jets launched from or redirected by the accretion flow that powers them are expected to be affected by the dynamics of the ... ...

    Abstract Powerful relativistic jets are one of the main ways in which accreting black holes provide kinetic feedback to their surroundings. Jets launched from or redirected by the accretion flow that powers them are expected to be affected by the dynamics of the flow, which for accreting stellar-mass black holes has shown evidence for precession
    Sprache Englisch
    Erscheinungsdatum 2019-04-29
    Erscheinungsland England
    Dokumenttyp Journal Article ; Research Support, U.S. Gov't, Non-P.H.S. ; Research Support, Non-U.S. Gov't
    ZDB-ID 120714-3
    ISSN 1476-4687 ; 0028-0836
    ISSN (online) 1476-4687
    ISSN 0028-0836
    DOI 10.1038/s41586-019-1152-0
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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