Publications des scientifiques de l'IRD

Albert A., Andre M., Anghinolfi M., Ardid M., Aubert J. J., Aublin J., Avgitas T., Baret B., Barrios-Marti J., Basa S., Belhorma B., Bertin V., Biagi S., Bormuth R., Boumaaza J., Bourret S., Bouwhuis M. C., Branzas H., Bruijn R., Brunner J., Busto J., Capone A., Caramete L., Carr J., Celli S., Chabab M., El Moursli R. C., Chiarusi T., Circella M., Coelho J. A. B., Coleiro A., Colomer M., Coniglione R., Costantini H., Coyle P., Creusot A., Diaz A. F., Deschamps A., Distefano C., Di Palma I., Domi A., Dona R., Donzaud C., Dornic D., Drouhin D., Eberl T., El Bojaddaini I., El Khayati N., Elsasser D., Enzenhofer A., Ettahiri A., Fassi F., Felis I., Fermani P., Ferrara G., Fusco L., Gay P., Glotin H., Gregoire T., Ruiz R. G., Graf K., Hallmann S., van Haren H., Heijboer A. J., Hello Yann, et al., ANTARES Collaboration, IceCube Collaboration, LIGO Scientific Collaboration, Virgo Collaboration. (2019). Search for multimessenger sources of gravitational waves and high-energy neutrinos with advanced LIGO during Its first observing run, ANTARES, and IceCube. Astrophysical Journal, 870 (2), p. art. 134 [16 p.]. ISSN 0004-637X.

Titre du document
Search for multimessenger sources of gravitational waves and high-energy neutrinos with advanced LIGO during Its first observing run, ANTARES, and IceCube
Année de publication
2019
Type de document
Article référencé dans le Web of Science WOS:000456063900015
Auteurs
Albert A., Andre M., Anghinolfi M., Ardid M., Aubert J. J., Aublin J., Avgitas T., Baret B., Barrios-Marti J., Basa S., Belhorma B., Bertin V., Biagi S., Bormuth R., Boumaaza J., Bourret S., Bouwhuis M. C., Branzas H., Bruijn R., Brunner J., Busto J., Capone A., Caramete L., Carr J., Celli S., Chabab M., El Moursli R. C., Chiarusi T., Circella M., Coelho J. A. B., Coleiro A., Colomer M., Coniglione R., Costantini H., Coyle P., Creusot A., Diaz A. F., Deschamps A., Distefano C., Di Palma I., Domi A., Dona R., Donzaud C., Dornic D., Drouhin D., Eberl T., El Bojaddaini I., El Khayati N., Elsasser D., Enzenhofer A., Ettahiri A., Fassi F., Felis I., Fermani P., Ferrara G., Fusco L., Gay P., Glotin H., Gregoire T., Ruiz R. G., Graf K., Hallmann S., van Haren H., Heijboer A. J., Hello Yann, et al., ANTARES Collaboration, IceCube Collaboration, LIGO Scientific Collaboration, Virgo Collaboration
Source
Astrophysical Journal, 2019, 870 (2), p. art. 134 [16 p.] ISSN 0004-637X
Astrophysical sources of gravitational waves, such as binary neutron star and black hole mergers or core-collapse supernovae, can drive relativistic outflows, giving rise to non-thermal high-energy emission. High-energy neutrinos are signatures of such outflows. The detection of gravitational waves and high-energy neutrinos from common sources could help establish the connection between the dynamics of the progenitor and the properties of the outflow. We searched for associated emission of gravitational waves and high-energy neutrinos from astrophysical transients with minimal assumptions using data from Advanced LIGO from its first observing run O1, and data from the ANTARES and IceCube neutrino observatories from the same time period. We focused on candidate events whose astrophysical origins could not be determined from a single messenger. We found no significant coincident candidate, which we used to constrain the rate density of astrophysical sources dependent on their gravitational-wave and neutrino emission processes.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Limnologie physique / Océanographie physique [032] ; Sciences de la Terre : généralités [060]
Localisation
Fonds IRD [F B010074929]
Identifiant IRD
fdi:010074929
Contact