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  4. Causality constraints in Quadratic Gravity
 
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Causality constraints in Quadratic Gravity

Source
Journal of High Energy Physics
Date Issued
2021-09-01
Author(s)
Edelstein, José D.
Ghosh, Rajes
Laddha, Alok
Sarkar, Sudipta  
DOI
10.1007/JHEP09(2021)150
Volume
2021
Issue
9
Abstract
Classifying consistent effective field theories for the gravitational interaction has recently been the subject of intense research. Demanding the absence of causality violation in high energy graviton scattering processes has led to a hierarchy of constraints on higher derivative terms in the Lagrangian. Most of these constraints have relied on analysis that is performed in general relativistic backgrounds, as opposed to a generic solution to the equations of motion which are perturbed by higher curvature operators. Hence, these constraints are necessary but may not be sufficient to ensure that the theory is consistent. In this context, we explore the so-called CEMZ causality constraints on Quadratic Gravity in a space of shock wave solutions beyond GR. We show that the Shapiro time delay experienced by a graviton is polarization-independent and positive, regardless of the strength of the gravitational couplings. Our analysis shows that as far as the causality constraints are concerned, albeit inequivalent to General Relativity due to additional propagating modes, Quadratic Gravity is causal as per as the diagnostic proposed by CEMZ.
Publication link
https://link.springer.com/content/pdf/10.1007/JHEP09(2021)150.pdf
URI
https://d8.irins.org/handle/IITG2025/25319
Subjects
Black Holes | Classical Theories of Gravity
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