首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Production of thermonuclear neutrons from deuterium-filled capsule implosion experiments driven by Z-Pinch dynamic hohlraurns at Sandia National Laboratories' Z facility
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Production of thermonuclear neutrons from deuterium-filled capsule implosion experiments driven by Z-Pinch dynamic hohlraurns at Sandia National Laboratories' Z facility

机译:由桑迪亚国家实验室(Zandia National Laboratories)Z设施的Z-Pinch动力水平仪驱动的填充氘的胶囊内爆实验生产热核中子

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Deuterium-filled capsule implosion experiments that employ the dynamic hohlraum are presently being conducted on the Z facility at Sandia National Laboratories. This paper will address the evidence for thermonuclear neutron production in the initial series and subsequent series of experiments that have been conducted to date employing Be, plastic, and glass capsules. The novelty of this approach motivated using several techniques to determine that the neutrons were thermonuclear in origin. The diagnostic techniques employed consist of measuring the average neutron energy and yield isotropy in two directions that were separated by a polar angle of 102 degrees. Additional "null" experiments were also employed that used the addition of Xe gas to the deuterium gas fill to suppress fusion neutron yields from the capsules by an order of magnitude. Use of these techniques are of particular importance because alternative, nonthermonuclear neutron processes were previously found to exist in Z-pinch and dense plasma focus plasmas. Such processes typically involved the creation of directed energetic ions leading to the production of nonthermal, "ion beam" generated neutrons. If not properly diagnosed, neutrons produced by these nonthermal processes could be misinterpreted as thermonuclear in origin.
机译:目前正在桑迪亚国家实验室(Sandia National Laboratories)的Z设施上进行采用动态球菌的氘填充胶囊内爆实验。本文将讨论迄今为止使用Be,塑料和玻璃胶囊进行的最初系列和后续系列实验中产生热核中子的证据。这种方法的新颖性是用几种技术来确定中子起源是热核的。使用的诊断技术包括在两个方向上测量平均中子能量和屈服各向同性,两个方向之间的相角为102度。还使用了另外的“空”实验,该实验使用了将Xe气体添加到氘气填充物中以将来自胶囊的聚变中子产率抑制一个数量级。这些技术的使用特别重要,因为以前发现Z夹捏和密集等离子体聚焦等离子体中存在替代性的非核中子过程。此类过程通常涉及定向高能离子的产生,导致产生非热“离子束”产生的中子。如果不能正确诊断,则由这些非热过程产生的中子可能会被误解为热核起源。

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