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Thermonuclear Fusion Plasma by Lasers

1972
As lasers have an ability to deliver a large amount of energy very rapidly to matters, one can produce thermonuclear temperature plasma. We observed the neutron yield from a solid deuterium target irradiated by the beam of glass laser, wave length of 1.06 μ, pulse width of 2 ns and power of about 10 GW.
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Hydrogen Driving Thermonuclear Fusion Energy

2018
The thermonuclear fusion reactions in hydrogen isotopes are known to be a new source of energy in two very different situations. At one extreme, relatively slow reactions in a very controlled, confined manner produces theenergy emitted by the Sun and stars, whereas at the other, rapid thermonuclear reactions are responsible for the strong thermonuclear
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Thermonuclear fusion and confinement

2004
Stefano Atzeni, JÜrgen Meyer-Ter-Vehn
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The Thermonuclear Fusion Lesson

Energia, Ambiente e Innovazione, 2017
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Proliferation Implications For Thermonuclear Fusion

2011
A technical analysis of the environmental aspects related to the nuclear weapons proliferation implications of inertial (ICF) and magnetic (MCF) confinement fusion systems is performed, substantiating the main technical points, and showing that while full access to the physics of thermonuclear weapons is the main implication of ICF, full access to ...
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