INTEGRAL Detection of the First Prompt Gamma-Ray Signal Coincident with the Gravitational-wave Event GW170817
Обнаружение обсерваторией INTEGRAL первого prompt-сигнала гамма-излучения, совпадающего с гравитационно-волновым событием GW170817
2017-10-16
SCID: 54.1/c48nzke5
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GRB 170817AGW170817INTEGRAL SPI-ACSbinary neutron star mergerkilonova gamma-ray emission
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Abstract (AI)
Abstract We report the INTernational Gamma-ray Astrophysics Laboratory ( INTEGRAL ) detection of the short gamma-ray burst GRB 170817A (discovered by Fermi -GBM) with a signal-to-noise ratio of 4.6, and, for the first time, its association with the gravitational waves (GWs) from binary neutron star (BNS) merging event GW170817 detected by the LIGO and Virgo observatories. The significance of association between the gamma-ray burst observed by INTEGRAL and GW170817 is 3.2σ, while the association between the Fermi -GBM and INTEGRAL detections is 4.2σ. GRB 170817A was detected by the SPI-ACS instrument about 2 s after the end of the GW event. We measure a fluence of (1.4 ± 0.4 ± 0.6) × 10 −7 erg cm −2 (75–2000 keV), where, respectively, the statistical error is given at the 1σ confidence level, and the systematic error corresponds to the uncertainty in the spectral model and instrument response. We also report on the pointed follow-up observations carried out by INTEGRAL , starting 19.5 hr after the event, and lasting for 5.4 days. We provide a stringent upper limit on any electromagnetic signal in a very broad energy range, from 3 keV to 8 MeV, constraining the soft gamma-ray afterglow flux to <7.1 × 10 −11 erg cm −2 s −1 (80–300 keV). Exploiting the unique capabilities of INTEGRAL , we constrained the gamma-ray line emission from radioactive decays that are expected to be the principal source of the energy behind a kilonova event following a BNS coalescence. Finally, we put a stringent upper limit on any delayed bursting activity, for example, from a newly formed magnetar.
Key Findings
1
Follow-up observations from 19.5 hours to 5.4 days after the merger found no electromagnetic counterpart, constraining the 80–300 keV soft gamma-ray afterglow flux to <7.1 × 10−11 erg cm−2 s−1.
2
INTEGRAL constrained gamma-ray line emission from radioactive decays expected to power the kilonova and placed stringent limits on delayed bursting activity, including possible emission from a newly formed magnetar.
3
INTEGRAL detected GRB 170817A, providing the first prompt gamma-ray signal associated with the binary-neutron-star merger GW170817.
4
INTEGRAL measured a 75–2000 keV fluence of (1.4 ± 0.4 ± 0.6) × 10−7 erg cm−2.
5
The gamma-ray signal was detected about 2 seconds after the gravitational-wave event, with association significance of 3.2σ and INTEGRAL–Fermi detection consistency of 4.2σ.
Research Object
the prompt gamma-ray signal GRB 170817A and its electromagnetic emission from the binary neutron star merger GW170817
Research Subject
the temporal association, fluence, afterglow, radioactive gamma-ray line emission, and delayed bursting activity of the merger-associated gamma-ray signal
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2017-10-16
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