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Main Authors: Laloo, Rishav, Gupta, Prachi, Kenath, Arun
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2501.02301
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author Laloo, Rishav
Gupta, Prachi
Kenath, Arun
author_facet Laloo, Rishav
Gupta, Prachi
Kenath, Arun
contents Einstein's General Theory of Relativity predicted the existence of gravitational waves (GWs), which offer a way to explore cosmic events like binary mergers and could help resolve the Hubble Tension. The Hubble Tension refers to the discrepancy in the measurements of the Hubble Constant, Ho, obtained through different methods and missions over various periods. By analyzing gravitational wave data, particularly from mergers that also emit light (electromagnetic radiation), such as Bright Sirens, we aim to reduce this tension. This paper will investigate the properties of GWs produced by these binary mergers and utilize a mathematical framework to tackle the Hubble Tension. Future advancements in gravitational wave astronomy, particularly with initiatives like LIGO-India and LISA, promise to enhance research outcomes. The ground-based LIGO-India will increase sensitivity and improve localization, while the space-based LISA will target lower frequency ranges of GWs, enabling the detection of signals from a wider array of sources.
format Preprint
id arxiv_https___arxiv_org_abs_2501_02301
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Study on Gravitational Waves from Binary Mergers and Constraints on the Hubble Parameter
Laloo, Rishav
Gupta, Prachi
Kenath, Arun
General Relativity and Quantum Cosmology
Einstein's General Theory of Relativity predicted the existence of gravitational waves (GWs), which offer a way to explore cosmic events like binary mergers and could help resolve the Hubble Tension. The Hubble Tension refers to the discrepancy in the measurements of the Hubble Constant, Ho, obtained through different methods and missions over various periods. By analyzing gravitational wave data, particularly from mergers that also emit light (electromagnetic radiation), such as Bright Sirens, we aim to reduce this tension. This paper will investigate the properties of GWs produced by these binary mergers and utilize a mathematical framework to tackle the Hubble Tension. Future advancements in gravitational wave astronomy, particularly with initiatives like LIGO-India and LISA, promise to enhance research outcomes. The ground-based LIGO-India will increase sensitivity and improve localization, while the space-based LISA will target lower frequency ranges of GWs, enabling the detection of signals from a wider array of sources.
title Study on Gravitational Waves from Binary Mergers and Constraints on the Hubble Parameter
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2501.02301