Multi-collision internal shock lepto-hadronic models for energetic GRBs
arXiv:2212.00765 · doi:10.3847/1538-4357/acc861
Abstract
For a sub-population of energetic Gamma-Ray Bursts (GRBs), a moderate baryonic loading may suffice to power Ultra-High-Energy Cosmic Rays (UHECRs). Motivated by this, we study the radiative signatures of cosmic-ray protons in the prompt phase of energetic GRBs. Our framework is the internal shock model with multi-collision descriptions of the relativistic ejecta (with different emission regions along the jet), plus time-dependent calculations of photon and neutrino spectra. Our GRB prototypes are motivated by {\em Fermi}-LAT detected GRBs (including GRB~221009A) for which further, owing to the large energy flux, neutrino non-observation of single events may pose a strong limit on the baryonic loading. We study the feedback of protons on electromagnetic spectra in synchrotron- and inverse Compton-dominated scenarios to identify the multi-wavelength signatures, to constrain the maximally allowed baryonic loading, and to point out the differences between hadronic and inverse Compton signatures. We find that hadronic signatures appear as correlated flux increases in the optical-UV to soft X-ray and GeV to TeV gamma-ray ranges in the synchrotron scenarios, whereas they are difficult to identify in inverse Compton-dominated scenarios. We demonstrate that baryonic loadings around 10, which satisfy the UHECR energetic requirements, do not distort the predicted photon spectra in the {\em Fermi}-GBM range and are consistent with constraints from neutrino data if the collision radii are large enough (i.e., the time variability is not too short). It therefore seems plausible that under the condition of large dissipation radii a population of energetic GRBs can be the origin of the UHECRs.
Version accepted for publication in ApJ
References in corpus (29)
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- Teraelectronvolt emission from the -ray burst GRB 190114C
- Energy spectra of gamma-rays, electrons and neutrinos produced at interactions of relativistic protons with low energy radiation
- A very-high-energy component deep in the Gamma-ray Burst afterglow
- A Comprehensive Analysis of Fermi Gamma-Ray Burst Data. I. Spectral Components and Their Possible Physical Origins of LAT/GBM GRBs
- A decade of Gamma-Ray Bursts observed by -LAT: The 2 GRB catalog
- Klein-Nishina Effects on Optically Thin Synchrotron and Synchrotron Self-Compton Spectrum
- Prompt GRB emission from gradual energy dissipation
- Bulk Lorentz factors of Gamma-Ray Bursts
- A new view on Auger data and cosmogenic neutrinos in light of different nuclear disintegration and air-shower models
- Towards a Better Understanding of the GRB Phenomenon: a New Model for GRB Prompt Emission and its effects on the New Non-Thermal L-E relation
- Evidence of two spectral breaks in the prompt emission of gamma ray bursts
- Towards open and reproducible multi-instrument analysis in gamma-ray astronomy
- The width of gamma-ray burst spectra
- Ultra-high energy cosmic rays, cascade gamma-rays, and high-energy neutrinos from gamma-ray bursts
- Magnetic Field and Flavor Effects on the Gamma-Ray Burst Neutrino Flux
- Searches for Neutrinos from Gamma-Ray Bursts using the IceCube Neutrino Observatory
- Acceleration of Ultra-High Energy Cosmic Rays in the Colliding Shells of Blazars and GRBs: Constraints from the Fermi Gamma ray Space Telescope
- Spectral evolution in gamma-ray bursts: predictions of the internal shock model and comparison to observations
- On the jet-ejecta interaction in 3D GRMHD simulations of binary neutron star merger aftermath
- Multi-messenger model for the prompt emission from GRB 221009A
- The role of hadronic cascades in GRB models of efficient neutrino production
- Inverse Compton cooling in Klein-Nishina regime and GRB prompt spectrum
- The slope of the low energy spectrum of Gamma-Ray Burst prompt emission
- Mildly relativistic magnetized shocks in electron-ion plasmas -- II. Particle acceleration and heating
- Hadronic supercriticality as a trigger for GRB emission
- Evidence of an Internal Dissipation Origin for the High-energy Prompt Emission of GRB 170214A
- Neutrino search from γ-ray bursts during the prompt and X-ray afterglow phases using 10 years of IceCube public data
- Searches for correlation between UHECR events and high-energy gamma-ray Fermi-LAT data
Cited by in corpus (9)
- Pre-merger alert to detect the very-high-energy prompt emission from binary neutron-star mergers: Einstein Telescope and Cherenkov Telescope Array synergy
- AM: An Open-Source Tool for Time-Dependent Lepto-Hadronic Modeling of Astrophysical Sources
- Electromagnetic Cascade Emission from Neutrino-Coincident Tidal Disruption Events
- Subphotospheric emission from short gamma-ray bursts: Protons mold the multi-messenger signals
- Prompt Gamma-Ray Burst Emission from Internal Shocks -- New Insights
- Two-detector flavor sensitivity to ultra-high-energy cosmic neutrinos
- Off-axis MeV and very-high-energy gamma-ray emissions from structured gamma-ray burst jets
- Detecting the early optical flashes of gamma-ray bursts with small telescope arrays
- Numerical simulations of internal shocks in spherical geometry: hydrodynamics and prompt emission