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      • They are produced by the hottest and most energetic objects in the universe, such as neutron stars and pulsars, supernova explosions, and regions around black holes. On Earth, gamma waves are generated by nuclear explosions, lightning, and the less dramatic activity of radioactive decay.
      science.nasa.gov/ems/12_gammarays
  1. Aug 10, 2016 · They are produced by the hottest and most energetic objects in the universe, such as neutron stars and pulsars, supernova explosions, and regions around black holes. On Earth, gamma waves are generated by nuclear explosions, lightning, and the less dramatic activity of radioactive decay.

  2. Nov 18, 2014 · There are several physical processes that generate cosmic gamma rays: A high-energy particle can collide with another particle. A particle can collide and annihilate with its anti-particle. An element can undergo radioactive decay. A charged particle can be accelerated.

  3. en.wikipedia.org › wiki › Gamma_rayGamma ray - Wikipedia

    Natural sources of gamma rays on Earth include gamma decay from naturally occurring radioisotopes such as potassium-40, and also as a secondary radiation from various atmospheric interactions with cosmic ray particles.

  4. Gamma rays are produced during the disintegration of radioactive atomic nuclei and the decay of certain subatomic particles. Gamma rays are also produced through the process of pair annihilation, in which an electron and its antiparticle, a positron, vanish and two photons are created.

  5. Dec 28, 2022 · On Earth, gamma rays are produced by radioactive decay, nuclear weapons and lightning, while in space they are produced by violent, high-energy sources such as solar flares, quasars, black...

  6. Nov 9, 2010 · A series of animations showing how gamma rays can be created through various particle interactions. Pion production and decay animation. A proton travelling to the speed of light strikes a slower-moving proton.

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