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Oh My God Particle

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The Oh-My-God Particle: A 50-Joule Cosmic Ray That Still Defies Its Source
science1 month ago

The Oh-My-God Particle: A 50-Joule Cosmic Ray That Still Defies Its Source

On Oct 15, 1991, the Fly’s Eye detector in Utah observed the Oh-My-God particle—a single cosmic ray with about 3.2×10^20 eV, roughly 51 joules, far more energy per particle than any human accelerator. The event arose from an atmospheric shower tracked via ultraviolet fluorescence; the primary was likely a nucleus, though its exact composition remains uncertain. In per-particle terms, its energy was about 47 million times that of an LHC proton, though the collider holds far more total energy overall. At these energies, interactions with the cosmic microwave background (the GZK effect) limit how far such particles can travel, implying a relatively nearby source, yet no definitive origin has been identified. Later observations confirm such extreme events are rare, and the origin of this particle remains unknown, illustrating how nature can push matter beyond present human-made accelerators.

Ultra-high-energy cosmic rays defy easy explanations
science1 month ago

Ultra-high-energy cosmic rays defy easy explanations

The Oh-My-God particle, a subatomic nucleus detected in 1991 with energy around 3.2×10^20 eV, remains one of the most extreme cosmic rays ever observed. Since then, at least a dozen–plus similar events have been recorded, confirming ultra-high-energy cosmic rays are real but exceedingly rare: detectors like the Pierre Auger Observatory see roughly one such event per square kilometer per century, while the sources remain unknown. The leading possibilities are extragalactic, with candidates including magnetars and the supermassive black holes at centers of active galaxies, but no definitive origin has been identified.

Unraveling the Mystery of the Highest-Energy Cosmic Ray Detected
astronomy2 years ago

Unraveling the Mystery of the Highest-Energy Cosmic Ray Detected

Astronomers using the Telescope Array in Utah have detected an ultra-high-energy cosmic ray (UHECR) with an energy level of 244 EeV, the highest since the famous "Oh-My-God" particle in 1991. Dubbed the "Amaterasu" particle, its origin remains a mystery, as tracing its trajectory led to an empty area of space known as the "Local Void." The detection challenges current theories on the sources of UHECRs, which could include cosmic-scale explosions, active galactic nuclei, gamma ray bursts, or starburst galaxies. The expansion of the Telescope Array may provide more insights into these high-energy particles.