Accès ouvert déclaré
2020
article
Full orbital solution for the binary system in the northern Galactic disc microlensing event Gaia16aye
Ł. Wyrzykowski, P. Mróz, K. A. Rybicki, M. Gromadzki, Z. Kołaczkowski, Paweł Zieliński, N. Britavskiy, A. Gomboc, K. V. Sokolovsky, L. Abe, G. F. Aldi, A. AlMannaei, G. Altavilla, A. Al Qasim, G. C. Anupama, Supachai Awiphan, E. Bachelet, Volkan Bakış, Steven G. Baker, Stuart Bartlett, Philippe Bendjoya, K. Benson, I. F. Bikmaev, G. Birenbaum, N. Blagorodnova, S. Blanco-Cuaresma, S. Boeva, A. Z. Bonanos, V. Bozza, D. M. Bramich, I. Bruni, U. Burgaz, T. Butterley, H. E. Caines, D. B. Caton, S. Calchi Novati, J. M. Carrasco, A. Cassan, V. Čepas, M. Cropper, Martyna Chruślińska, G. Clementini, Aurora Clerici, Dennis M. Conti, M. Conti, S. Cross, F. Cusano, G. Damljanović, A. Dapergolas, G. D’Ago, J. H. J. de Bruijne, M. Dennefeld, V. S. Dhillon, M. Dominik, Максим Еселевич, Hasan Esenoğlu, L. Eyer, R. Figuera Jaimes, S. J. Fossey, A. I. Galeev, S. A. Grebenev, Alok C. Gupta, A. G. Gutaev, N. Hallakoun, A. Hamanowicz, Cheongho Han, Barbara Handzlik, J. Haislip, L. Hanlon, L. K. Hardy, D. L. Harrison, Van Heerden, V. Hoette, K. Horne, R. Hudec, M. Hundertmark, N. Ihanec, E. N. Irtuganov, R. Itoh, Patryk Iwanek, M. D. Jovanović, R. Janulis, M. Jelínek, Eric L. N. Jensen, Z. Kaczmarek, D. Katz, I. Khamitov, Y. Kılıç, U. Kolb, G. Kopacki, Sebastian Kurowski, G. Latev, S. Leonini, G. Leto, Zhexing Li, A. Liakos, S. P. Littlefair, Jessica R. Lu, Shude Mao, D. Maoz, A. Martín-Carrillo, Johannes Petrus Marais, M. Maskoliūnas, J. R. Maund, P. J. Meintjes, S. S. Melnikov, Kristo Ment, P. Mikołajczyk, N. Mowlavi, D. Moździerski, David Murphy, S. V. Nazarov, H. Netzel, R. Nesci, Chow‐Choong Ngeow, A. J. Norton, E. O. Ofek, E. Pakštienė, L. Palaversa, A. K. Pandey, E. Paraskeva, M. Pawlak, Matthew T. Penny, B. E. Penprase, A. S. Piascik, J. L. Prieto, J. K. T. Qvam, Clément Ranc, A. Rebassa–Mansergas, D. E. Reichart, P. Reig, Lauren Rhodes, J.-P. Rivet, G. Rixon, Dan Roberts, P. Rosi, D. M. Russell, R. Zanmar Sánchez, G. M. Seabroke, B. J. Shappee, R. Schmidt, Y. Shvartzvald, M. Sitek, J. Skowron, Marzena Śniegowska, C. Snodgrass, B. van Soelen, Z. T. Spetsieri, I. A. Steele, R. A. Street, J. Štrobl, Hélène Szegedi, L. M. Tinjaca Ramirez, L. Tomasella, Y. Tsapras, D. Vernet, Steven Villanueva, O. Vince, J. Wambsganß, I. P. van der Westhuizen, K. Wiersema, D. J. Wium, A. Yoldas, J. Zdanavičius, S. Zoła
30Citations signalées, ce qui n’est pas une note de qualité
119Institutions déclarées
32Pays d’affiliation déclarés
Rattachement africain : pl, rs, es, si, ru, gr, gb, fr, th, it, ae, in, us, tr, il, nl, ch, bg, au, lt, cl, cn, de, kr, ie, Afrique du Sud, cz, jp, ua, tw, no, sk.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Gaia16aye was a binary microlensing event discovered in the direction towards the northern Galactic disc and was one of the first microlensing events detected and alerted to by the Gaia space mission. Its light curve exhibited five distinct brightening episodes, reaching up to I = 12 mag, and it was covered in great detail with almost 25 000 data points gathered by a network of telescopes. We present the photometric and spectroscopic follow-up covering 500 days of the event evolution. We employed a full Keplerian binary orbit microlensing model combined with the motion of Earth and Gaia around the Sun to reproduce the complex light curve. The photometric data allowed us to solve the microlensing event entirely and to derive the complete and unique set of orbital parameters of the binary lensing system. We also report on the detection of the first-ever microlensing space-parallax between the Earth and Gaia located at L2. The properties of the binary system were derived from microlensing parameters, and we found that the system is composed of two main-sequence stars with masses 0.57 ± 0.05 M⊙ and 0.36 ± 0.03 M⊙ at 780 pc, with an orbital period of 2.88 years and an eccentricity of 0.30. We also predict the astrometric microlensing signal for this binary lens as it will be seen by Gaia as well as the radial velocity curve for the binary system. Events such as Gaia16aye indicate the potential for the microlensing method of probing the mass function of dark objects, including black holes, in directions other than that of the Galactic bulge. This case also emphasises the importance of long-term time-domain coordinated observations that can be made with a network of heterogeneous telescopes.
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Les sujets associés
Stellar, planetary, and galactic studiesAstrophysics and Star Formation StudiesGamma-ray bursts and supernovae