We present upper limits in the hard X-ray and gamma-ray bands at the time of the Laser Interferometer Gravitational-wave Observatory (LIGO) gravitational-wave event GW151226 derived from the CALorimetric Electron Telescope (CALET) observation. The main instrument of CALET, CALorimeter (CAL), observes gammarays from similar to 1 GeV up to 10 TeV with a field of view of similar to 2 sr. The CALET gamma-ray burst monitor (CGBM) views similar to 3 sr and similar to 2 pi sr of the sky in the 7 keV-1 MeV and the 40 keV-20 MeV bands, respectively, by using two different scintillator-based instruments. The CGBM covered 32.5% and 49.1% of the GW151226 sky localization probability in the 7 keV-1 MeV and 40 keV-20 MeV bands respectively. We place a 90% upper limit of 2 x 10(-7) erg cm(-2) s(-1) in the 1-100 GeV band where CAL reaches 15% of the integrated LIGO probability (similar to 1.1 sr). The CGBM 7 sigma upper limits are 1.0 x 10(-6) erg cm(-2) s(-1) (7-500 keV) and 1.8. x. 10(-6) erg cm(-2) s(-1) (50-1000 keV) for a 1 s exposure. Those upper limits correspond to the luminosity of 3-5. x. 10(49) erg s(-1), which is significantly lower than typical short GRBs.

CALET UPPER LIMITS ON X-RAY AND GAMMA-RAY COUNTERPARTS OF GW151226

MESSINEO, ALBERTO MARIA;
2016-01-01

Abstract

We present upper limits in the hard X-ray and gamma-ray bands at the time of the Laser Interferometer Gravitational-wave Observatory (LIGO) gravitational-wave event GW151226 derived from the CALorimetric Electron Telescope (CALET) observation. The main instrument of CALET, CALorimeter (CAL), observes gammarays from similar to 1 GeV up to 10 TeV with a field of view of similar to 2 sr. The CALET gamma-ray burst monitor (CGBM) views similar to 3 sr and similar to 2 pi sr of the sky in the 7 keV-1 MeV and the 40 keV-20 MeV bands, respectively, by using two different scintillator-based instruments. The CGBM covered 32.5% and 49.1% of the GW151226 sky localization probability in the 7 keV-1 MeV and 40 keV-20 MeV bands respectively. We place a 90% upper limit of 2 x 10(-7) erg cm(-2) s(-1) in the 1-100 GeV band where CAL reaches 15% of the integrated LIGO probability (similar to 1.1 sr). The CGBM 7 sigma upper limits are 1.0 x 10(-6) erg cm(-2) s(-1) (7-500 keV) and 1.8. x. 10(-6) erg cm(-2) s(-1) (50-1000 keV) for a 1 s exposure. Those upper limits correspond to the luminosity of 3-5. x. 10(49) erg s(-1), which is significantly lower than typical short GRBs.
2016
Adriani, O.; Akaike, Y.; Asano, K.; Asaoka, Y.; Bagliesi, M. G.; Bigongiari, G.; Binns, W. R.; Bonechi, S.; Bongi, M.; Brogi, P.; Buckley, J. H.; Cannady, N.; Castellini, G.; Checchia, C.; Cherry, M. L.; Collazuol, G.; Di Felice, V.; Ebisawa, K.; Fuke, H.; Guzik, T. G.; Hams, T.; Hareyama, M.; Hasebe, N.; Hibino, K.; Ichimura, M.; Ioka, K.; Ishizaki, W.; Israel, M. H.; Javaid, A.; Kasahara, K.; Kataoka, J.; Kataoka, R.; Katayose, Y.; Kato, C.; Kawanaka, N.; Kawakubo, Y.; Kitamura, H.; Krawczynski, H. S.; Krizmanic, J. F.; Kuramata, S.; Lomtadze, T.; Maestro, P.; Marrocchesi, P. S.; Messineo, ALBERTO MARIA; Mitchell, J. W.; Miyake, S.; Mizutani, K.; Moiseev, A. A.; Mori, K.; Mori, M.; Mori, N.; Motz, H. M.; Munakata, K.; Murakami, H.; Nakagawa, Y. E.; Nakahira, S.; Nishimura, J.; Okuno, S.; Ormes, J. F.; Ozawa, S.; Pacini, L.; Palma, F.; Papini, P.; Penacchioni, A. V.; Rauch, B. F.; Ricciarini, S.; Sakai, K.; Sakamoto, T.; Sasaki, M.; Shimizu, Y.; Shiomi, A.; Sparvoli, R.; Spillantini, P.; Stolzi, F.; Takahashi, I.; Takayanagi, M.; Takita, M.; Tamura, T.; Tateyama, N.; Terasawa, T.; Tomida, H.; Torii, S.; Tsunesada, Y.; Uchihori, Y.; Ueno, S.; Vannuccini, E.; Wefel, J. P.; Yamaoka, K.; Yanagita, S.; Yoshida, A.; Yoshida, K.; Yuda, T.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/841923
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