Tests of general relativity with GWTC-3
R. Abbott; H. Abe; F. Acernese; K. Ackley; N. Adhikari; R. X. Adhikari; V.K Adkins; V. B. Adya · 2025 · Physical review. D/Physical review. D.
WASTE classifies this as Replication Failure · AI classification, approximate
A previously reported effect did not replicate here — verify it holds before you build on it.
Abstract (excerpt)
The ever-increasing number of detections of gravitational waves from compact binaries by the Advanced LIGO and Advanced Virgo detectors allows us to perform ever-more sensitive tests of general relativity (GR) in the dynamical and…
Excerpt shown for reference under fair use — read the full paper at the publisher.
About to run something similar?
Run an AI Precheck on your own design to catch failure modes like this one before you spend the time. Your first desk check is free.
Related failures
Scale-free networks are rare.
Negative / Null Result ReportScale-free networks are rare
Negative / Null Result ReportDark Matter Search Results from the CDMS II Experiment
Negative / Null Result ReportDetection of a gamma-ray source in the Galactic Center consistent with extended emission from dark matter annihilation and concentrated astrophysical emission
Negative / Null Result ReportTransient Water Vapor at Europa’s South Pole
Negative / Null Result ReportThe NANOGrav 11 Year Data Set: Pulsar-timing Constraints on the Stochastic Gravitational-wave Background
WASTE indexes this work — it does not host or republish it. Failure-type classification is automated and approximate.
Metadata source: OpenAlex · DOI 10.1103/physrevd.112.084080
