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Thermonuclear dynamo inside ultracentrifuge with supersonic plasma flow stabilization

机译:超速离心机内部的热核发电机,具有超声波等离子体流稳定功能

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Einstein's general theory of relativity implies the existence of virtual negative masses in the rotational reference frame of an ultracentrifuge with the negative mass density of the same order of magnitude as the positive mass density of a neutron star. In an ultracentrifuge, the repulsive gravitational field of this negative mass can simulate the attractive positive mass of a mini-neutron star, and for this reason can radially confine a dense thermonuclear plasma placed inside the centrifuge, very much as the positive mass of a star confines its plasma by its own attractive gravitational field. If the centrifuge is placed in an externally magnetic field to act as the seed field of a magnetohydrodynamic generator, the configuration resembles a magnetar driven by the release of energy through nuclear fusion, accelerating the plasma to supersonic velocities, with the magnetic field produced by the thermomagnetic Nernst effect insulating the hot plasma from the cold wall of the centrifuge. Because of the supersonic flow and the high plasma density the configuration is stable. (C) 2016 AIP Publishing LLC.
机译:爱因斯坦的广义相对论意味着在超速离心机的旋转参考系中存在虚拟负质量,负质量密度与中子星的正质量密度在数量级上。在超速离心机中,该负质量的排斥引力场可以模拟微型中子星的引力正质量,因此可以径向限制离心机内部放置的稠密热核等离子体,这与恒星的正质量非常相似。通过其自身引人入胜的引力场限制其等离子体。如果将离心机放置在外部磁场中作为磁流体动力发生器的种子场,则该配置类似于由核聚变释放能量所驱动的磁星,从而将等离子体加速至超音速,并由热磁能斯特效应将热等离子体与离心机的冷壁隔离。由于超音速流动和高等离子体密度,配置是稳定的。 (C)2016 AIP出版有限责任公司。

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