Near Zone Dynamical Effects in Gravity
Victor Massart, M. B. Paranjape

TL;DR
This paper analyzes the dynamical aspects of Newtonian noise in gravitational wave detection, proposing experiments to measure gravitational effects' propagation speed and exploring seismic event detection using gravitational wave detectors.
Contribution
It introduces the concept of dynamical Newtonian noise, suggesting its potential measurability and utility in testing general relativity and seismic monitoring.
Findings
Dynamical Newtonian noise may be measurable with current detectors.
Proposed experiments could verify the speed of gravitational effects.
Gravitational wave detectors can serve as early seismic warning systems.
Abstract
Dynamical effects in general relativity have been finally, relatively recently observed by LIGO\cite{2016LRR....19....1A}. To be able to measure these signals, great care has to be taken to minimize all sources of noise in the detector. One of the sources of noise is called Newtonian noise. In this article we present an analysis of the dynamical (time dependent) nature of the Newtonian noise. In that respect, it is a misnomer to call it Newtonian noise, the Newtonian theory does not afford any dynamical notion of the gravitational field. The dynamical aspects of the nature of the Newtonian noise have heretofore been disregarded as they were considered negligible. However, we demonstrate that they are indeed not far from the realm of being measurable. They could be used to validate Einsteinian general relativity or to give valuable information on the true dynamical nature of gravity. One…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Geophysics and Sensor Technology · Relativity and Gravitational Theory
