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    • 8. 发明申请
    • SYSTEMS AND METHODS FOR MAGNETICALLY ASSISTED INERTIAL ELECTROSTATIC CONFINEMENT FUSION
    • 用于静电辅助静电放电融合的系统和方法
    • WO2011044495A1
    • 2011-04-14
    • PCT/US2010/052037
    • 2010-10-08
    • FPGENERATION, INC.KLEIN, AlexanderRACKEY, Scott
    • KLEIN, AlexanderRACKEY, Scott
    • G21B1/03H05H1/11
    • G21B1/03H05H1/11Y02E30/14
    • In one embodiment, a nuclear fusion-generating device includes a cathodic magnet having a polyhedral structure formed from current-carrying leg sections and adapted to generate a multi-poled magnetic field such that the curvature of the magnetic field lines are everywhere convex within a magnet interior region. An ion generating system injects ions into a center of the magnet interior region at energies favoring a nuclear fusion cross-section of the ions. The current-carrying elements can be powered and configured to confine electrons into the center of the magnet interior region to function as a cathode that neutralizes ionic space charges and facilitates ion movement along paths that do not intersect solid structures. The current-carrying elements can be formed with a radial-to-azimuthal aspect ratio that favors increased transparency to the ions without sacrificing magnetic field strength.
    • 在一个实施例中,核熔融生成装置包括具有由载流腿部部分形成的多面体结构的阴极磁体,并且适于产生多极化磁场,使得磁场线的曲率在磁铁内凸起 内部区域。 离子产生系统在有利于离子的核熔融横截面的能量下将离子注入磁体内部区域的中心。 载流元件可以被供电和配置为将电子限制在磁体内部区域的中心,用作中和离子空间电荷并促进沿着不与实心结构相交的路径的离子运动的阴极。 载流元件可以以径向对方位角的纵横比形成,有利于提高离子的透明度而不牺牲磁场强度。