Gravitational Waves from Binary Neutron Star Mergers

Authors

  • Riley Robinson
  • Casey Scott
  • Adrian Hall

Keywords:

gravitational, waves, neutron, star, mergers

Abstract

We present a comprehensive analysis of gravitational waves emitted by binary neutron star mergers. Utilizing data from LIGO and Virgo observatories, this research characterizes the waveforms and explores the astrophysical parameters influencing them. Our results provide new insights into the equation of state of neutron star matter and establish constraints on the maximum mass and radius of neutron stars. This study significantly contributes to our understanding of dense matter physics and the role of neutron stars in the universe.

Author Biographies

Riley Robinson

PhD in Astrophysics
University of Toronto
27 King's College Cir, Toronto, ON M5S, Canada

Casey Scott

PhD in Theoretical Physics
University of Cambridge
The Old Schools, Trinity Ln, Cambridge CB2 1TN, United Kingdom

Adrian Hall

PhD in Astronomy
Kyiv National University of Construction and Architecture
Povitroflotskyi Ave, 31, Kyiv, Ukraine, 03680

References

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Adəm, Q. N. (2025). APPLICATION OF PHYSICS LABORATORIES IN THE ELECTRONIC LEARNING ENVIRONMENT. ARCENG (INTERNATIONAL JOURNAL OF ARCHITECTURE AND ENGINEERING) ISSN: 2822-6895, 5(1), 205-209.

Adem, G. N., & Gachay, Z. S. (2025). METAL-DIELECTRIC-SEMICONDUCTOR TRANSISTORS IN INTEGRAL CIRCUITS. German International Journal of Modern Science/Deutsche Internationale Zeitschrift für Zeitgenössische Wissenschaft, (98).

Published

2025-11-12

Issue

Section

Articles