Plasmas Created in the Interaction of Antiprotons with Atomic and Ionized Hydrogen Isotopes. Suggested Fuels for Space Engines

M. Abdel-Raouf, A. T. Elgendy, A. A. Youssef
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引用次数: 1

Abstract

The main objective of the present work is to investigate the properties of plasmas created by injecting a thermalized beam of antiprotons in two types of media. The first is hydrogen, deuterium, or tritium atoms localized in palladium crystals. The second medium is composed of protons, deuterons, or tritons localized in a magnetic cavity. Particularly, it is demonstrated that huge amounts of energy are released in both cases which could be used as fuels for space shuttle engines. A novel mathematical scheme is employed to calculate the energy yields in real space at different incident energies of the antiprotons.
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反质子与原子和电离氢同位素相互作用产生的等离子体。建议的太空引擎燃料
本工作的主要目的是研究在两种介质中注入热化反质子束所产生的等离子体的性质。第一种是钯晶体中的氢、氘或氚原子。第二种介质由位于磁腔中的质子、氘核或氚组成。特别是,它证明了在这两种情况下都释放了大量的能量,这些能量可以用作航天飞机发动机的燃料。采用一种新的数学格式来计算不同反质子入射能量在实空间中的产能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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