Unraveling the Enigma: Exploring the Diverse Facets of Gamma-Ray Burst Emission
A special issue of Galaxies (ISSN 2075-4434).
Deadline for manuscript submissions: 30 November 2024 | Viewed by 420
Special Issue Editor
Special Issue Information
Dear Colleagues,
Gamma-ray bursts (GRBs), the most energetic and mysterious explosions in the universe, continue to captivate the scientific community with their enigmatic origins and profound implications for astrophysics. The aim of this Special Issue is to delve into the forefront of GRB research, shedding light on the diverse aspects of their emission mechanisms, properties, and the profound astrophysical phenomena associated with these high-energy events.
This Special Issue seeks to explore the underlying physics governing the emission processes of GRBs, addressing key questions such as the nature of the progenitor systems, the mechanisms responsible for the extreme energy release, and the interactions with the surrounding environment. We invite contributions that span observational, theoretical, and computational approaches to decipher the intricacies of GRB emissions, aiming to advance our understanding of these cosmic fireworks.
The scope of this issue encompasses a wide array of topics, including but not limited to the identification and characterization of different GRB classes, the role of magnetic fields in the emission process, and the connection between GRBs and other astrophysical phenomena such as supernovae and compact object mergers. We encourage submissions that leverage multi-messenger observations, incorporating data from satellites, ground-based telescopes, and emerging gravitational wave detectors to provide a comprehensive view of GRB events.
Researchers and experts in the field are invited to contribute their latest findings, theories, and observational insights, fostering a collaborative platform for the exchange of ideas and advancements in our quest to unravel the mysteries of GRB emissions. Through this Special Issue, we aim to consolidate the current state of knowledge, identify key challenges, and pave the way for future breakthroughs in understanding the astrophysical processes underlying the emission of gamma-ray bursts.
Dr. Helen Poon
Guest Editor
Manuscript Submission Information
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Keywords
- gamma-ray bursts
- high energy
- observations
- theory
- multiwavelength
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