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The BATSE Gamma‐Ray Burst Spectral Catalog. I. High Time Resolution Spectroscopy of Bright Bursts Using High Energy Resolution Data

R. D. PreeceDepartment of Physics, University of Alabama, Huntsville, Huntsville, AL 35899M. S. BriggsDepartment of Physics, University of Alabama, Huntsville, Huntsville, AL 35899R. S. MallozziDepartment of Physics, University of Alabama, Huntsville, Huntsville, AL 35899G. N. PendletonDepartment of Physics, University of Alabama, Huntsville, Huntsville, AL 35899W. S. PačiesasDepartment of Physics, University of Alabama, Huntsville, Huntsville, AL 35899D. L. BandCenter for Astrophysics and Space Sciences, Code 0424, University of California, San Diego, La Jolla, CA 92093
2000en
ABI

Аннотация

This is the first in a series of gamma-ray burst spectroscopy catalogs from the Burst And Transient Source Experiment (BATSE) on the Compton Gamma Ray Observatory, each covering a different aspect of burst phenomenology. In this paper, we present time-sequences of spectral fit parameters for 156 bursts selected for either their high peak flux or fluence. All bursts have at least eight spectra in excess of 45 sigma above background and span burst durations from 1.66 to 278 s. Individual spectral accumulations are typically 128 ms long at the peak of the brightest events, but can be as short as 16 ms, depending on the type of data selected. We have used mostly high energy resolution data from the Large Area Detectors, covering an energy range of typically 28 - 1800 keV. The spectral model chosen is from a small empirically-determined set of functions, such as the well-known `GRB' function, that best fits the time-averaged burst spectra. Thus, there are generally three spectral shape parameters available for each of the 5500 total spectra: a low-energy power-law index, a characteristic break energy and possibly a high-energy power-law index. We present the distributions of the observed sets of these parameters and comment on their implications. The complete set of data that accompanies this paper is necessarily large, and thus is archived electronically at: http://www.journals.uchicago.edu/ApJ/journal/.

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