This study analyzes data from the Herschel Space Observatory to search for observational evidence for the Quantum Amorphous Ice (QAI) Theory, which proposes that dark matter and dark energy emerge from the collective quantum properties of water in an amorphous ice state. In the halo of the galaxy Centaurus A, researchers detected an anomalous emission at 1.021 THz, consistent with the QAI prediction (1.023 THz). The signal shows spatial correlation with mass tracers (globular clusters, planetary nebulae), anti-correlation with hot X-ray gas, kinematic coherence with galactic rotation, and a filamentary structure revealed by super-resolution. A combined Bayesian analysis yields decisive evidence in favor of the QAI interpretation, suggesting that the dark components of the universe could be manifestations of a quantum superfluid of structured water on a cosmological scale.
rogelio perez casadiego (Wed,) studied this question.