Time-resolved spectral correlations of long-duration Gamma-Ray Bursts
C. Firmani (1,2), J.I. Cabrera (2), V. Avila-Reese (2), G. Ghisellini, (1), G. Ghirlanda (1), L. Nava (2,3), Z. Bosnjak ((1) INAF-OAB, (2) IA-UNAM,, (3) IA-Paris)

TL;DR
This study investigates the evolution of long Gamma-Ray Bursts on the luminosity-peak energy diagram, exploring correlations over different phases and the impact of selection effects, jet collimation, and intrinsic scatter.
Contribution
It extends the analysis of spectral correlations to all phases of GRB prompt emission and assesses the effects of selection biases and jet collimation on these correlations.
Findings
Selection effects significantly influence the Liso-Ep' correlation.
Correcting for jet collimation reduces scatter in the correlations.
Time-resolved features underpin the time-integrated spectral correlations.
Abstract
For a sample of long GRBs with known redshift, we study the distribution of the evolutionary tracks on the rest-frame luminosity-peak energy Liso-Ep' diagram. We are interested in exploring the extension of the `Yonetoku' correlation to any phase of the prompt light curve, and in verifying how the high-signal prompt duration time, Tf, in the rest frame correlates with the residuals of such correlation (Firmani et al. 2006). For our purpose, we analyse separately two samples of time-resolved spectra corresponding to 32 GRBs with peak fluxes >1.8 phot cm^-2 s^-1 from the Swift-BAT detector, and 7 bright GRBs from the CGRO-BATSE detector previously processed by Kaneko et al. (2006). After constructing the Liso-Ep' diagram, we discuss the relevance of selection effects, finding that they could affect significantly the correlation. However, we find that these effects are much less…
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