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Related papers: Properties of Thorne-Zytkow object explosions

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We propose that massive Thorne-Zytkow objects can explode. A Thorne-Zytkow object is a theoretically predicted star that has a neutron core. When nuclear reactions supporting a massive Thorne-Zytkow object terminate, a strong accretion…

High Energy Astrophysical Phenomena · Physics 2018-03-12 Takashi J. Moriya

Thorne-\.Zytkow objects (T\.ZOs) are a class of stellar object comprised of a neutron star core surrounded by a large and diffuse envelope. Their exterior appearance is identical to red supergiants; the distinctive electromagnetic signature…

High Energy Astrophysical Phenomena · Physics 2021-04-28 Lindsay DeMarchi , J. R. Sanders , Emily M. Levesque

Thorne-\.Zytkow Objects (T\.ZOs) have been predicted to form when a neutron star is engulfed by a diffuse, convective giant envelope. Accretion onto a neutron star at a rate that is larger than $10^{-4}\, M_\odot$ yr$^{-1}$ is expected to…

High Energy Astrophysical Phenomena · Physics 2025-04-04 Pablo Martínez-Miravé , Irene Tamborra , Alejandro Vigna-Gómez

A Thorne-\.{Z}ytkow object can be formed when a neutron star is absorbed by the envelope of its giant companion star, spirals toward the center of the giant star due to the drag from the surrounding envelope, and merges with the star's…

High Energy Astrophysical Phenomena · Physics 2024-07-31 Z. K. Silagadze

Thorne-\.Zytkow Objects (T\.ZOs) are hypothetical hybrid stars with a neutron star at the core of a large, diffuse envelope. (T\.ZOs) may be formed when a newly formed neutron star that is kicked by its supernova collides with its…

Solar and Stellar Astrophysics · Physics 2025-10-21 Lauryn E. Williams , Philip Chang , Emily M. Levesque , Thomas R. Quinn

Interacting binary star systems play a critical role in many areas of astrophysics. One interesting example of a binary merger product are Thorne-\.Zytkow Objects (T\.ZOs), stars that look like red supergiants but contain neutron stars at…

Solar and Stellar Astrophysics · Physics 2025-09-12 Anna J. G. O'Grady , Takashi J. Moriya , Mathieu Renzo , Alejandro Vigna-Gómez

Thorne-$\.Z$ytkow objects (T$\.Z$O) are potential end products of the merger of a neutron star with a non-degenerate star. In this work, we have computed the first grid of evolutionary models of T$\.Z$Os with the MESA stellar evolution…

Solar and Stellar Astrophysics · Physics 2023-07-20 R. Farmer , M. Renzo , Y. Götberg , E. Bellinger , S. Justham , S. E de Mink

We present an extensive study of accretion onto neutron stars in which the velocity of the neutron star and structure of the surrounding medium is such that the Bondi-Hoyle accretion exceeds .001 Msun/y. For most cases, hypercritical…

Astrophysics · Physics 2016-08-30 Chris L. Fryer , Willy Benz , Marc Herant

Calculation of gravitational radiation during binary inspiral leading to possible formation of a Thorne-Zytkow (TZ) object (a neutron star inside a supergiant core) is performed. The calculations were done for polytropic density…

Astrophysics · Physics 2011-05-23 S. N. Nazin , K. A. Postnov

The evolution of neutron stars (NSs) embedded within massive stellar envelopes is a critical phase in binary stellar evolution, potentially leading to the formation of Thorne-\.Zytkow Objects (T\.ZOs) or catastrophic collapse. We present…

High Energy Astrophysical Phenomena · Physics 2026-04-28 Patrick Chi-Kit Cheong , David Radice , Christopher L. Fryer

The origin of the 6.67 hr period X-ray source, 1E161348-5055, in the young supernova remnant RCW 103 is puzzling. We propose that it may be the descendant of a Thorne-Zytkow Object (TZO). A TZO may at its formation have a rapidly spinning…

High Energy Astrophysical Phenomena · Physics 2015-06-05 X. W. Liu , R. X. Xu , E. P. J. van den Heuvel , G. J. Qiao , J. L. Han , Z. W. Han , X. D. Li

Relativistic jets are observed from accreting and cataclysmic transients throughout the Universe, and have a profound affect on their surroundings. Despite their importance, their launch mechanism is not known. For accreting neutron stars,…

Context. Common envelope evolution of a massive star and a neutron star companion has two possible outcomes: formation of a short-period binary (a potential gravitational wave source progenitor) or a merger of the massive star with the…

Solar and Stellar Astrophysics · Physics 2025-02-05 K. Nathaniel , A. Vigna-Gómez , A. Grichener , R. Farmer , M. Renzo , R. W. Everson

In many X-ray point sources on the sky, the X-ray emission arises because hydrogen and/or helium is accreted onto a neutron star from a nearby donor star. When this matter settles on the neutron star surface, it will undergo nuclear fusion.…

Astrophysics · Physics 2009-11-10 Erik Kuulkers

We present a start-to-end simulation aimed at studying the long-term fate of high-mass X-ray binaries and whether a Thorne-\.Zytkow object (T\.ZO) might ultimately be assembled. We analyze results from a 3D hydrodynamical simulation that…

Quasi-periodic eruptions (QPEs) are a class of X-ray flaring phenomena that occur at the centers of galactic nuclei and are likely to arise from repeated interactions between a star and an accretion disk. This work investigates whether such…

High Energy Astrophysical Phenomena · Physics 2025-09-05 Zhi-peng Ma , Kai Wang

Thorne-\.{Z}ytkow objects (T\.{Z}Os), hypothetical merger products in which a neutron star is embedded in a stellar core, are traditionally considered steady-state configurations. Their assembly, especially through dynamical channels, is…

High Energy Astrophysical Phenomena · Physics 2024-06-19 Rosa Wallace Everson , Tenley Hutchinson-Smith , Alejandro Vigna-Gómez , Enrico Ramirez-Ruiz

When a massive star ends its life, its core collapses, forming a neutron star or black hole and producing some of the most energetic explosions in the universe. Core-collapse supernovae and long-duration gamma-ray bursts are the violent…

High Energy Astrophysical Phenomena · Physics 2015-06-16 C. L. Fryer

It is widely thought that core-collapse supernovae (CCSNe), the explosions of massive stars following the collapse of the stars' iron cores, is obtained due to energy deposition by neutrinos. So far, this scenario was not demonstrated from…

High Energy Astrophysical Phenomena · Physics 2015-02-12 Doron Kushnir
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