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Proton–boron fusion : ウィキペディア英語版 | Proton–boron fusion
Proton–boron fusion is the fusion of a boron nucleus with a proton. It is one of the most promising forms of aneutronic fusion and uses one laser to create a boron-11 plasma and another to create a stream of protons that smash into the plasma, producing slow-moving helium particles but no neutrons. The laser-generated proton beam produces a tenfold increase of boron fusion because protons and boron nuclei collide directly. Earlier methods used a solid boron target, "protected" by its electrons, which reduced the fusion rate. Scaled-up versions of the system were expected to require substantially less energy input to create and sustain the reaction.〔 ==Neutron radiation==
Most laser fusion systems produce radiation in the form of fast-moving neutrons that requires heavy shielding and degrades the walls of the fusion reactor.〔
抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)』 ■ウィキペディアで「Proton–boron fusion」の詳細全文を読む
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