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Rogue Pulsar Snaps Galactic Bone in Milky Way’s Spine


A galactic filament stretching through the Milky Way, suffered a strange zone that distorts the magnetic field that seems to be broken in a large bone. The new ray images caught by the Chandra Observatory can finally help diagnose astronomers by calling a rapidly spinning neutron star as a sinner.

The center of the galaxy is marked by large, large, bone-like structures with central parallel magnetic fields and landslides. About 26,000 light years of land, G359.13, known as the longest and most brightness of these structures G359.13. Despite the size of the bone, the rapidly moving, rapidly wrapped neutron star or pulsar, or pulsar, or pulsar, or the other-resistant length pause, or the other-resistant length breaks down, or paper In May 2024, the King was published in monthly notifications of the Astronomical Society.

Bone
X-Ray: NASA / CXC / North-West UNIV./F. YOSEF-RESEY AT AL; Radio: NRF / Sarao / Meerkat; Photo processing: NASA / CXC / ON. Shirt-maker

Using Meerkat Radio Reynjhin and Radio Radio Reection in South Africa, using the team behind the team behind the paper, used the galactic bone and radio information to determine the fracture to determine the grace. Snake and other galactic filaments, the particles that make up, use radio waves that can be detected by series such as Meerkat.

The pictures are similar to the medical x rays of a long, thin bone who are broken in the center. By examining the images, astronomers found an X-ray and radio source that can accelerate to the higher energy of the electric and positrons (counterpart of antimaton) due to smashing. Thanks to the X-ray emissions of the ladies, it may seem in the images, which led to a red-handed catch in his shot.

Pulsaries, deposition and supernova are the chaotic remains of the stars that occur as a result of a mass star explosion. These explosions often send rapidly at high speeds at high speed during the rapidly rotating and electromagnetic radiation. Many things are going on here and fully follow where the pulsar is going.

Researchers believe that rapidly in the fast speed may cause a slip in G359.13 that it is between one million and two million miles per hour. Probably, the collision distorted the magnetic field in the bone that caused the radio signal.

The Milky Way is full of such intense encounters, and the busted filament is the latest character of the galaxy that continues only. With tools such as Chandra and Meerkat, astronomers continue to keep this space scourges.



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