Javascript must be enabled to continue!
The Ep,i–Eiso correlation: type I gamma-ray bursts and the new classification method
View through CrossRef
ABSTRACTWe present the most extensive sample of 45 type I (short) and 275 type II (long) gamma-ray bursts (GRBs) with known redshift to investigate the correlation between the rest-frame peak energy, Ep,i and the total isotropic equivalent energy, Eiso of the prompt emission (Amati relation). The Ep,i–Eiso correlation for type I bursts is found to be well distinguished from the one constructed for type II bursts and has a similar power-law index value, Ep,i$\propto E_\text{iso}^{~0.4}$, which possibly indicates the same emission mechanism of both GRB types. We show that the initial pulse complex (IPC) of type I bursts with an extended emission and regular type I bursts follow the same correlation. We obtain similar results for type II bursts associated with Ic supernovae and for regular type II bursts. Three possible outliers from the Ep,i–Eiso correlation for type II subsample are detected. Significant evolution of the Ep,i–Eiso correlation with redshift for type II bursts is not found. We suggest the new classification method, based on the Ep,i–Eiso correlation and introduce two parameters, $EH = E_\text{p,i,2} ~ E_\text{iso,51}^{~-0.4}$ and $EHD = E_\text{p,i,2} ~ E_\text{iso,51}^{~-0.4} ~ T_\text{90,i}^{~-0.5}$, where Ep,i,2 is the value of Ep,i parameter in units of 100 keV, Eiso,51 is the value of Eiso parameter in units of 1051 erg, and T90,i is the rest-frame duration in units of seconds. EHD is found to be the most reliable parameter for the blind type I/type II classification, which can be used to classify GRBs with no redshift.
Oxford University Press (OUP)
Title: The Ep,i–Eiso correlation: type I gamma-ray bursts and the new classification method
Description:
ABSTRACTWe present the most extensive sample of 45 type I (short) and 275 type II (long) gamma-ray bursts (GRBs) with known redshift to investigate the correlation between the rest-frame peak energy, Ep,i and the total isotropic equivalent energy, Eiso of the prompt emission (Amati relation).
The Ep,i–Eiso correlation for type I bursts is found to be well distinguished from the one constructed for type II bursts and has a similar power-law index value, Ep,i$\propto E_\text{iso}^{~0.
4}$, which possibly indicates the same emission mechanism of both GRB types.
We show that the initial pulse complex (IPC) of type I bursts with an extended emission and regular type I bursts follow the same correlation.
We obtain similar results for type II bursts associated with Ic supernovae and for regular type II bursts.
Three possible outliers from the Ep,i–Eiso correlation for type II subsample are detected.
Significant evolution of the Ep,i–Eiso correlation with redshift for type II bursts is not found.
We suggest the new classification method, based on the Ep,i–Eiso correlation and introduce two parameters, $EH = E_\text{p,i,2} ~ E_\text{iso,51}^{~-0.
4}$ and $EHD = E_\text{p,i,2} ~ E_\text{iso,51}^{~-0.
4} ~ T_\text{90,i}^{~-0.
5}$, where Ep,i,2 is the value of Ep,i parameter in units of 100 keV, Eiso,51 is the value of Eiso parameter in units of 1051 erg, and T90,i is the rest-frame duration in units of seconds.
EHD is found to be the most reliable parameter for the blind type I/type II classification, which can be used to classify GRBs with no redshift.
Related Results
On Proximal Relations in Transformation Semigroups Arising from Generalized Shifts
On Proximal Relations in Transformation Semigroups Arising from Generalized Shifts
For a finite discrete topological space $X$ with at least two elements, a nonempty set $\Gamma$, and a map $\varphi:\Gamma \to \Gamma$, $\sigma_{\varphi}:X^{\Gamma} \to X^{\Gamma}$...
Moving radio bursts associated with solar flares detected by XSM onboard Chandrayaan-2
Moving radio bursts associated with solar flares detected by XSM onboard Chandrayaan-2
Abstract
Solar radio bursts and associated solar flares play an important role in investigating the solar eruptive events occurring in the solar atmosphere. Radio b...
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
<span style="font-size: 11pt; color: black; font-family: 'Times New Roman','serif'">ΠΗΛΙΝΑ ΙΓ&Delta...
Solar Cycle Variation of Sustained Gamma Ray Emission from the Sun
Solar Cycle Variation of Sustained Gamma Ray Emission from the Sun
Abstract
We investigated the occurrence rate of the sustained gamma ray emission (SGRE) events from the Sun using data obtained by the Large Area Telescope (LAT) on...
Functional comparison of Fc epsilon RI, Fc gamma RII, and Fc gamma RIII in mast cells
Functional comparison of Fc epsilon RI, Fc gamma RII, and Fc gamma RIII in mast cells
Abstract
The cellular responses initiated by cross-linking rodent Fc gamma RII-b1, Fc gamma RII-b2, Fc gamma RIII, and Fc epsilon RI in mast cells were compared. Ind...
Cross-linking of both Fc gamma RI and Fc gamma RII induces secretion of tumor necrosis factor by human monocytes, requiring high affinity Fc-Fc gamma R interactions. Functional activation of Fc gamma RII by treatment with proteases or neuraminidase.
Cross-linking of both Fc gamma RI and Fc gamma RII induces secretion of tumor necrosis factor by human monocytes, requiring high affinity Fc-Fc gamma R interactions. Functional activation of Fc gamma RII by treatment with proteases or neuraminidase.
Abstract
Cross-linking of Fc gamma R on human monocytes with human IgG has been shown to induce secretion of the inflammatory and immunoregulatory cytokine TNF. In t...
A Method for Determining the Porosity of Pulsed Neutron by Combining Gamma Energy and Time Spectrum
A Method for Determining the Porosity of Pulsed Neutron by Combining Gamma Energy and Time Spectrum
Pulsed-neutron gamma energy spectroscopy and neutron lifetime measurement systems enable the evaluation of the elemental content, saturation. And recent studies have demonstrated t...

