The radiative efficiency of relativistic jet and wind: A case study of GRB 070110
Shuang Du, Hou-Jun L\"u, Shu-Qing Zhong, En-Wei Liang

TL;DR
This study analyzes GRB 070110 to determine the origin of its prompt emission and internal plateau, suggesting they arise from different components, with implications for the radiative efficiency of relativistic jets and winds.
Contribution
The paper provides observational constraints on the physical parameters of the neutron star central engine and compares the radiative efficiencies of prompt emission and internal plateau in GRB 070110.
Findings
Prompt emission radiative efficiency is about 6%.
Internal plateau radiative efficiency exceeds 31%.
Different components likely produce prompt emission and internal plateau.
Abstract
A rapidly spinning, strongly magnetized neutron star is invoked as the central engine for some Gamma-ray bursts (GRBs), especially, the internal plateau feature of X-ray afterglow. However, for these internal plateau GRBs, how to produce their prompt emission remains an open question. Two different physical process have been proposed in the literature, (1) a new-born neutron star is surrounded by a hyper-accreting and neutrino cooling disk, the GRB jet can be powered by neutrino annihilation aligning the spin axis; (2) a differentially rotating millisecond pulsar was formed due to different angular velocity between the interior core and outer shell parts of the neutron star, which can power an episodic GRB jet. In this paper, by analyzing the data of one peculiar GRB 070110 (with internal plateau), we try to test which model being favored. By deriving the physical parameters…
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