Scientists proposed that the incredibly energetic neutrino recently detected by the KM3NeT telescope might have been born not in a distant galaxy, but in the early Universe—from the decay of ancient particles. This version explains why other detectors missed it: the signal is as narrow as a lighthouse beam. Could we be touching the echo of the cosmos's very birth?
Neutrinos are almost elusive particles: they zip through planets without noticing atoms. So every catch is a stroke of luck. Recently, the underwater detector KM3NeT snagged a neutrino with energy millions of times greater than Earth's most powerful accelerators can produce. A new study suggests: it's not a visitor from a distant galaxy, but a message from the early Universe. The particle was born when the world was only 380,000 years old, right after it became transparent.
This explains the silence of other observatories: the message is heard only at one energy. On its way to us, the neutrino collided with other neutrinos, and its energy changed. Such encounters could have left an imprint on the cosmic microwave background — the afterglow of the Big Bang, stretched by the Universe's expansion.
If the theory is correct, this lonely message will allow us to peer into the era of the first atoms and even deeper.
🎯 Every second, trillions of solar neutrinos pass through your body without causing the slightest harm.
🎬 Like in Arthur C. Clarke's 'Space Odyssey', where a mysterious signal comes from an unimaginable past.