Collaborator with SCCP, BIDMC, Copenhagen, Capital Region, Denmark
Hardware random number generators (RNGs) convert unpredictable physical noise into continuous streams of 1s and 0s, functioning as tireless electronic coin-flippers whose output should contain no lasting structure. Yet a substantial body of research reports that during periods of focused collective attention, RNG output can depart slightly but measurably from chance expectation. We tested whether such departures accompany a consecration. Methods. Consecration is a process in the yogic tradition described as transforming an inert physical form into a living, energetically active one through the use of life energies. Over five days in May 2025, the renowned yogi and spiritual master Sadhguru consecrated the Linga Bhairavi temple, a form of the Divine Feminine, at the Isha Institute of Inner Sciences in Tennessee, USA, before approximately 3,500 participants. We monitored the event with three independent RNG systems: two positioned at the venue and one distributed worldwide. The first, the Wyrdoscope, is a pair of hardware RNGs whose combined output is analyzed by an algorithm that searches for converging statistical structure and pinpoints the moment it emerges. The second, the HeartMath Institute's RNG tower, is a stationary array of 40 identical generators of the type used by the Global Consciousness Project, providing a fully independent on-site measurement. The third, the Global Consciousness Project's network (GCP 2.0), is a worldwide array of RNGs that served as a geographically distant control. Results. The Wyrdoscope highlighted three distinct departures from randomness. Two coincided, to within minutes, with the moments Sadhguru stepped onto the stage on the opening and closing days. The third and largest of the entire recording was a continuous deviation lasting at least 20 hours. The HeartMath Institute's RNG tower observed significance on the same day. We then applied the Wyrdoscope's algorithmically determined timing markers to the independently recorded tower data, a cross-system test not previously attempted. The same three events emerged with closely matching timing, and at the longest anomaly the two systems converged on the same turning point to within minutes. The global network registered no corresponding deviation. Discussion. Two independent, co-located systems captured the same temporal structure, whereas the geographically distant network did not, indicating a spatially localized effect associated with the consecration. Because timing markers derived from one device also localize the anomalies in a second, independent device, the approach yields a concrete, testable prediction for future consecrations.
Tea Mužić is a physicist and data analyst focused on consciousness research. Trained in biophysics at the Niels Bohr Institute, University of Copenhagen, she has co-authored peer-reviewed research on the thermodynamics of biological membranes and the role of anesthetics in nerve excitation and has hands-on neuroimaging experience (fMRI, ECoG/EEG) from research at Rigshospitalet, Copenhagen. She is first author and data analyst on the multi-system field-REG study presented here, conducted with a Harvard Medical School–affiliated team at the Sadhguru Center for a Conscious Planet, together with the Institute of Noetic Sciences, the HeartMath Institute, and Wyrd Research. The study examines the output of three independent random-number generator (RNG) systems during the five-day yogic consecration of the Linga Bhairavi temple.
Her broader theoretical interests include mind–matter interaction, dual-aspect monism, and panpsychism. She approaches consciousness science as a pioneering emerging discipline, coalescing from physics, medicine, psychology, and the contemplative traditions. Alongside her scientific training, she is a long-term practitioner of yogic disciplines (Isha Foundation), including advanced meditative programs - an experiential grounding in the inner sciences that she considers inseparable from her scientific work.
Education: MSc in Physics (specialisation in biophysics), Niels Bohr Institute, University of Copenhagen; Erasmus exchange, University College London (Physics & Astronomy); BSc in Physics, University of Rijeka (Magna Cum Laude)