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Nuclear fusion from Coulomb explosions of deuterated methane clusters subjected to ultraintense femtosecond laser pulses

机译:受到超强飞秒激光脉冲作用的氘甲烷团簇库仑爆炸的核聚变

摘要

This paper reports that Coulomb explosions taken place in the experiment of heteronuclear deuterated methane clusters ((CD4)(n)) in a gas jet subjected to intense femtosecond laser pulses (170 mJ, 70 fs) have led to table-top laser driven DD nuclear fusion. The clusters produced in supersonic expansion had an average energies of deuterons produced in the laser-cluster interaction were 60 and 1.5 KeV, respectively. From DD collisons of energetic deuterons, a yield of 2.5(+/-0.4)x10(4) fusion neutrons of 2.45 MeV per shot was realized, giving rise to a neutron production efficiency of about 1.5 x 10(5) per joule of incident laser pulse energy. Theoretical calculations were performed and a fairly good agreement of the calculated neutron yield with that obtained from the present experiment was found.
机译:本文报道了在经受强飞秒激光脉冲(170 mJ,70 fs)的气体射流中的异核氘代甲烷团簇((CD4)(n))实验中发生的库仑爆炸已导致台式激光驱动DD核聚变。在超音速膨胀中产生的团簇在激光-团簇相互作用中产生的氘核的平均能量分别为60 KeV和1.5 KeV。从高能氘核的DD碰撞中,实现了2.5(+/- 0.4)x10(4)个融合中子的单发产量为2.45 MeV,从而使每焦耳入射的中子产生效率约为1.5 x 10(5)。激光脉冲能量。进行了理论计算,并且发现计算出的中子产率与从本实验获得的中子产率相当吻合。

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