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首页> 外文期刊>International journal of hydrogen energy >Charged particle energy spectra from laser-induced processes: Nuclear fusion in ultra-dense deuterium D(0)
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Charged particle energy spectra from laser-induced processes: Nuclear fusion in ultra-dense deuterium D(0)

机译:激光诱导过程的带电粒子能谱:超致密氘D(0)中的核聚变

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Clear high-energy particle signatures of laser-induced nuclear fusion are now observed by energy spectroscopy with standard scintillation detectors. The particles observed are ejected from ultra-dense deuterium D(0) on the laser target. A colored glass-filter is used to distinguish between particles that create multiple photons in the plastic scintillator (electrons and ions) and those that interact only in the glass filter or in the photomultiplier (mesons and muons). Ions are observed with energy in the MeV range as in previous time of-flight experiments. They lose kinetic energy in a gas at a pressure up to 20 mbar as expected. Electron energy distributions with exponential shape corresponding to a temperature up to 600 MK indicate ignition of fusion. Intense emission of penetrating high-energy nuclear particles is detected at a high signal level as also reported previously (in this journal) for spontaneous processes. Both line-spectra and broad energy distributions are observed for these particles. The broad distributions give linear Kurie plots and are thus due to beta decay as concluded previously. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:现在,通过使用标准闪烁探测器的能谱,可以观察到激光诱导的核聚变的清晰的高能粒子特征。观察到的粒子从激光靶上的超重氘D(0)射出。彩色玻璃滤光片用于区分在塑料闪烁体中产生多个光子的粒子(电子和离子)和仅在玻璃滤光片或光电倍增器中相互作用的粒子(介子和介子)。与以前的飞行实验一样,在MeV范围内观察到的离子具有能量。它们会在预期压力高达20 mbar的气体中损失动能。具有对应于高达600 MK的温度的指数形状的电子能量分布表明发生了聚变。如先前(在本期刊中)针对自发过程所报道的那样,以高信号水平检测到穿透的高能核粒子的强烈发射。这些粒子既观察到谱线分布,又观察到宽泛的能量分布。较宽的分布给出线性Kurie图,因此归因于先前得出的β衰减。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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