Tidal Disruption Events (TDEs) are processes where stars are torn apart by the strong gravitational force near to a massive or supermassive black hole. If a jet is launched in such a process, particle acceleration may take place in internal shocks. We demonstrate that jetted TDEs can simultaneously describe the observed neutrino and cosmic ray fluxes at the highest energies if stars with heavier compositions, such as carbon-oxygen white dwarfs, are tidally disrupted and these events are sufficiently abundant. We simulate the photo-hadronic interactions both in the TDE jet and in the propagation through the extragalactic space and we show that the simultaneous description of Ultra-High Energy Cosmic Ray (UHECR) and PeV neutrino data implies ...
Abstract The optical spectral energy distributions of two tidal disruption flares identified by van ...
Ultrahigh-energy cosmic rays (UHECRs) can be accelerated by tidal disruption events of stars by blac...
Three tidal disruption event (TDE) candidates (AT2019dsg, AT2019fdr, AT2019aalc) have been found to ...
Tidal Disruption Events (TDEs) are processes where stars are torn apart by the strong gravitational ...
Tidal disruptions are extremely powerful phenomena that have been designated as candidate sources of...
International audienceTidal disruptions are extremely powerful phenomena that have been designated a...
During a tidal disruption event, a star is torn apart by the tidal forces of a supermassive black ho...
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...
Tidal disruption events (TDEs) by supermassive or intermediate mass black holes have been suggested ...
Cosmic neutrinos provide a unique window into the otherwise hidden mechanism of particle acceleratio...
The origins of the high-energy cosmic neutrino flux remain largely unknown. Recently, one high-energ...
Abstract The optical spectral energy distributions of two tidal disruption flares identified by van ...
Ultrahigh-energy cosmic rays (UHECRs) can be accelerated by tidal disruption events of stars by blac...
Three tidal disruption event (TDE) candidates (AT2019dsg, AT2019fdr, AT2019aalc) have been found to ...
Tidal Disruption Events (TDEs) are processes where stars are torn apart by the strong gravitational ...
Tidal disruptions are extremely powerful phenomena that have been designated as candidate sources of...
International audienceTidal disruptions are extremely powerful phenomena that have been designated a...
During a tidal disruption event, a star is torn apart by the tidal forces of a supermassive black ho...
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...
Tidal disruption events (TDEs) by supermassive or intermediate mass black holes have been suggested ...
Cosmic neutrinos provide a unique window into the otherwise hidden mechanism of particle acceleratio...
The origins of the high-energy cosmic neutrino flux remain largely unknown. Recently, one high-energ...
Abstract The optical spectral energy distributions of two tidal disruption flares identified by van ...
Ultrahigh-energy cosmic rays (UHECRs) can be accelerated by tidal disruption events of stars by blac...
Three tidal disruption event (TDE) candidates (AT2019dsg, AT2019fdr, AT2019aalc) have been found to ...