English

Advances in Understanding High-Mass X-ray Binaries with INTEGRAL and Future Directions

High Energy Astrophysical Phenomena 2021-02-17 v1

Abstract

High mass X-ray binaries are among the brightest X-ray sources in the Milky Way, as well as in nearby Galaxies. Thanks to their highly variable emissions and complex phenomenology, they have attracted the interest of the high energy astrophysical community since the dawn of X-ray Astronomy. In more recent years, they have challenged our comprehension of physical processes in many more energy bands, ranging from the infrared to very high energies. In this review, we provide a broad but concise summary of the physical processes dominating the emission from high mass X-ray binaries across virtually the whole electromagnetic spectrum. These comprise the interaction of stellar winds with the high gravitational and magnetic fields of compact objects, the behaviour of matter under extreme magnetic and gravity conditions, and the perturbation of the massive star evolutionary processes by presence in a binary system. We highlight the role of the INTEGRAL mission in the discovery of many of the most interesting objects in the high mass X-ray binary class and its contribution in reviving the interest for these sources over the past two decades. We show how the INTEGRAL discoveries have not only contributed to significantly increase the number of high mass X-ray binaries known, thus advancing our understanding of the population as a whole, but also have opened new windows of investigation that stimulated the multi-wavelength approach nowadays common in most astrophysical research fields. We conclude the review by providing an overview of future facilities being planned from the X-ray to the very high energy domain that will hopefully help us in finding an answer to the many questions left open after more than 18 years of INTEGRAL scientific observations.

Keywords

Cite

@article{arxiv.2009.03244,
  title  = {Advances in Understanding High-Mass X-ray Binaries with INTEGRAL and Future Directions},
  author = {Peter Kretschmar and Felix Fürst and Lara Sidoli and Enrico Bozzo and Julia Alfonso-Garzón and Arash Bodaghee and Sylvain Chaty and Masha Chernyakova and Carlo Ferrigno and Antonios Manousakis and Ignacio Negueruela and Konstantin Postnov and Adamantia Paizis and Pablo Reig and José Joaquín Rodes-Roca and Sergey Tsygankov and Antony J. Bird and Matthias Bissinger né Kühnel and Pere Blay and Isabel Caballero and Malcolm J. Coe and Albert Domingo and Victor Doroshenko and Lorenzo Ducci and Maurizio Falanga and Sergei A. Grebenev and Victoria Grinberg and Paul Hemphill and Ingo Kreykenbohm and Sonja Kreykenbohm né Fritz and Jian Li and Alexander A. Lutovinov and Silvia Martínez-Núñez and J. Miguel Mas-Hesse and Nicola Masetti and Vanessa A. McBride and Andrii Neronov and Katja Pottschmidt and Jérôme Rodriguez and Patrizia Romano and Richard E. Rothschild and Andrea Santangelo and Vito Sguera and Rüdiger Staubert and John A. Tomsick and José Miguel Torrejón and Diego F. Torres and Roland Walter and Jörn Wilms and Colleen A. Wilson-Hodge and Shu Zhang},
  journal= {arXiv preprint arXiv:2009.03244},
  year   = {2021}
}

Comments

61 pages, 22 figures, 1 table, will be published in New Astronomy Reviews