Can you make a gamma-ray laser?
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Can you make a gamma-ray laser?
To create a gamma-ray laser beam, positronium needs to be in a state called a Bose-Einstein condensate—a collection of positronium atoms in the same quantum state, allowing for more interactions and gamma radiation. Such a condensate is the key ingredient of a gamma-ray laser.
Is there a gamma-ray weapon?
American military scientists are developing a weapon which kills by delivering an enormous burst of high-energy gamma rays, it is claimed today. The bomb, which produces little fallout, blurs the distinction between conventional and nuclear weapons, and experts have already warned it could spark a new arms race.
Are gamma guns good?
The Irradiated Gamma Gun is perfect for cooking your enemies with all the deadly gamma rays you need. The Irradiated gamma gun is the most powerful per-shot radiation damage weapon in the game without mods or glitches.
What is the best build in Fallout 4?
1.The Infiltrator The Infiltrator is by far the most powerful build in Fallout 4. The main power of this build plays out once you obtain the Deliverer. However, this build utilizes sneak and high AP based perks in addition to a focus on the use of pistols.
Can gamma rays be used as a weapon?
For example, your gamma-ray laser may pass right through your target and only have a few photons even hit the target. This would make it a very bad weapon. Also, have you considered that gamma-rays can simply pass right through many materials without even doing damage to them?
Is it possible to produce gamma rays from plastic?
Intense beams of gamma rays would find a host of uses in fundamental physics research, nuclear fusion, and medicine, but they are hard to produce. A team has now used computer simulations to show that a powerful laser hitting a plastic surface can generate intense gamma-ray emission.
Is it possible to burn a hole through a gamma ray?
Gamma-rays are simply too penetrating. I don’t think you could burn a hole through anything with a gamma-ray laser. I would expect only a small portion of the energy would even be deposited into the target, and even then it would be spread out along the beam path through the target. Gamma-rays are simply too penetrating.
Can colliding beams of gamma rays create electrons and positrons?
In extreme astrophysical environments, such as near a supermassive black hole, matter and antimatter (electrons and positrons) regularly annihilate, producing gamma rays. Researchers would like to study the reverse process by colliding beams of gamma rays, which should create electrons and positrons, a transformation of light into matter [ 1 ].