FUSION INDUCED BY ENERGY-INTENSIVE MULTIFUNCTION CAVITATION IN CONJUNCTION WITH POSITRON IRRADIATION

T. Yoshimura
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Abstract

This review summarizes the development of multifunction cavitation technology and assesses future applications for this process. The focus is on attempts to increase the surface strength and functionality of various metals and plastics and to elucidate the conditions that can induce nuclear fusion by cavitation. An experimental setup capable of producing cavitation fusion based on positron-irradiated laser-assisted high-field energy-intensive functional cavitation is described, having the same basic structure as a prior device without positron irradiation. A combination of water jet, ultrasonic and magnetic field energy sources has been found to increase the sonoluminescence intensity and to theoretically exceed the threshold required for the D-T fusion reaction. This paper describes the incorporation of positron and laser energy sources to this system as a means of further increasing the internal temperature and pressure values of bubbles. Specifically, a Na-22 positron beam source was placed in the upper part of the reaction vessel in the direction of the magnetic field such that positrons were imparted to cavitation bubbles floating on the surface of degassed heavy acetone. These positrons were partially annihilated by interactions with electrons via the Compton effect to generate gamma-rays and energy via the reaction e+ + e- → 2γ + l.02 MeV. This energy promoted the D-T chain reaction D + T → 4He + n + 14 MeV to increase the probability of cavitation fusion.
高能多功能空化联合正电子辐照诱导聚变
本文综述了多功能空化技术的研究进展,并对其应用前景进行了展望。重点是试图增加各种金属和塑料的表面强度和功能,并阐明可以通过空化诱导核聚变的条件。描述了一种基于正电子辐照激光辅助高场高能功能空化的空化聚变实验装置,其基本结构与先前没有正电子辐照的装置相同。发现水射流、超声和磁场能量源的组合可以提高声致发光强度,并且理论上超过D-T聚变反应所需的阈值。本文介绍了在该系统中加入正电子和激光能量源,作为进一步提高气泡内部温度和压力值的手段。具体而言,将Na-22正电子束源沿磁场方向放置在反应容器上部,将正电子传递给脱气重丙酮表面漂浮的空化气泡。这些正电子通过康普顿效应与电子相互作用而部分湮灭,通过反应e+ + e-→2γ + l.02产生伽马射线和能量兆电子伏。该能量促进了D + T链式反应D + T→4He + n + 14mev,增加了空化聚变的概率。
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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