We review observational aspects of the active galactic nuclei and their jets in connection with the detection of high-energy neutrinos by the Antarctic IceCube Neutrino Observatory. We propose that a reoriented jet generated by the spin-flipping supermassive black hole in a binary merger is likely the source of such high-energy neutrinos. Hence they encode important information on the afterlife of coalescing supermassive black hole binaries. As the gravitational radiation emanating from them will be monitored by the future LISA space mission, high-energy neutrino detections could be considered a contributor to multi-messenger astronomy
Although many high-energy neutrinos detected by the IceCube telescope are believed to have an extrat...
We analyze the possible origin of high-energy neutrinos coming from galactic sources. A model is pro...
Several authors have presented astrophysical mechanisms that would lead to measureable sources of hi...
We review observational aspects of the active galactic nuclei and their jets in connection with the ...
The recent discovery of high-energy cosmic neutrinos by the IceCube neutrino observatory opens up a ...
IceCube is a cubic-kilometer Cherenkov telescope operating at the South Pole. In 2013 IceCube discov...
Active Galactic Nuclei (AGN) are sources of high-energy gamma-rays and are considered to be promisin...
The sources of the majority of the high-energy astrophysical neutrinos observed with the IceCube neu...
During the last decade, multi-messenger astronomy has become increasingly relevant for the astrophys...
Abstract. Active galactic nuclei (AGN) are known as sources of high energy γ-rays. The emission prob...
We demonstrate that a population of active galactic nuclei (AGN) can describe the observed spectrum ...
The origin of Petaelectronvolt (PeV) astrophysical neutrinos is fundamental to our understanding of ...
We study the production of high energy neutrinos in jets from the tidal disruption of stars by super...
We study the production of high energy neutrinos in jets from the tidal disruption of stars by super...
The IceCube project transformed a cubic kilometer of transparent natural Antarctic ice into a Cheren...
Although many high-energy neutrinos detected by the IceCube telescope are believed to have an extrat...
We analyze the possible origin of high-energy neutrinos coming from galactic sources. A model is pro...
Several authors have presented astrophysical mechanisms that would lead to measureable sources of hi...
We review observational aspects of the active galactic nuclei and their jets in connection with the ...
The recent discovery of high-energy cosmic neutrinos by the IceCube neutrino observatory opens up a ...
IceCube is a cubic-kilometer Cherenkov telescope operating at the South Pole. In 2013 IceCube discov...
Active Galactic Nuclei (AGN) are sources of high-energy gamma-rays and are considered to be promisin...
The sources of the majority of the high-energy astrophysical neutrinos observed with the IceCube neu...
During the last decade, multi-messenger astronomy has become increasingly relevant for the astrophys...
Abstract. Active galactic nuclei (AGN) are known as sources of high energy γ-rays. The emission prob...
We demonstrate that a population of active galactic nuclei (AGN) can describe the observed spectrum ...
The origin of Petaelectronvolt (PeV) astrophysical neutrinos is fundamental to our understanding of ...
We study the production of high energy neutrinos in jets from the tidal disruption of stars by super...
We study the production of high energy neutrinos in jets from the tidal disruption of stars by super...
The IceCube project transformed a cubic kilometer of transparent natural Antarctic ice into a Cheren...
Although many high-energy neutrinos detected by the IceCube telescope are believed to have an extrat...
We analyze the possible origin of high-energy neutrinos coming from galactic sources. A model is pro...
Several authors have presented astrophysical mechanisms that would lead to measureable sources of hi...