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Athena synergies in the multi-messenger and transient universe

Abstract: In this paper we explore the scientific synergies between Athena and some of the key multi-messenger facilities that should be operative concurrently with Athena. These facilities include LIGO A+, Advanced Virgo+ and future detectors for ground-based observation of gravitational waves (GW), LISA for space-based observations of GW, IceCube and KM3NeT for neutrino observations, and CTA for very high energy observations. These science themes encompass pressing issues in astrophysics, cosmology and fundamental physics such as: the central engine and jet physics in compact binary mergers, accretion processes and jet physics in Super-Massive Binary Black Holes (SMBBHs) and in compact stellar binaries, the equation of state of neutron stars, cosmic accelerators and the origin of Cosmic Rays (CRs), the origin of intermediate and high-Z elements in the Universe, the Cosmic distance scale and tests of General Relativity and the Standard Model. Observational strategies for implementing the identified science topics are also discussed. A significant part of the sources targeted by multi-messenger facilities is of transient nature. We have thus also discussed the synergy of Athena with wide-field high-energy facilities, taking THESEUS as a case study for transient discovery. This discussion covers all the Athena science goals that rely on follow-up observations of high-energy transients identified by external observatories, and includes also topics that are not based on multi-messenger observations, such as the search for missing baryons or the observation of early star populations and metal enrichment at the cosmic dawn with Gamma-Ray Bursts (GRBs).

Otras publicaciones de la misma revista o congreso con autores/as de la Universidad de Cantabria

 Autoría: Piro L., Ahlers M., Coleiro A., Colpi M., de Oña Wilhelmi E., Guainazzi M., Jonker P.G., Namara P.M., Nichols D.A., O’Brien P., Troja E., Vink J., Aird J., Amati L., Anand S., Bozzo E., Carrera F.J., Fabian A.C., Fryer C., Hall E., Korobkin O., Korol V., Mangiagli A., Martínez-Núñez S., Nissanke S., Osborne J., Padovani P., Rossi E.M., Ryan G., Sesana A., Stratta G., Tanvir N., van Eerten H.,

 Fuente: Experimental Astronomy, 2022, 54, 23-117

Editorial: Springer Nature

 Año de publicación: 2022

Nº de páginas: 95

Tipo de publicación: Artículo de Revista

 DOI: 10.1007/s10686-022-09865-6

ISSN: 0922-6435,1572-9508

 Proyecto español: RTI2018-096686-B-C21

Url de la publicación: https://doi.org/10.1007/s10686-022-09865-6

Autoría

PIRO, LUIGI

AHLERS, MARKUS

COLEIRO, ALEXIS

COLPI, MONICA

WILHELMI, EMMA DE OÑA

GUAINAZZI, MATTEO

JONKER, PETER G.

NAMARA, PAUL MC.

NICHOLS, DAVID A.

O'BRIEN, PAUL

TROJA, ELEONORA

VINK, JACCO

AIRD, JAMES

AMATI, LORENZO

ANAND, SHREYA

BOZZO, ENRICO

FRYER, CHRISTOPHER