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Method of forming stable states of dense high-temperature plasma in generating fusion energy

机译:产生聚变能时形成致密高温等离子体稳定态的方法

摘要

A method of forming stable states of a dense high-temperature plasma is disclosed, which comprises the steps of: (a) generating a dense high-temperature plasma from hydrogen and isotopes thereof with the aid of pulsed heavy-current discharges; (b) injecting the plasma from the area of a magnetic field with parameters corresponding to the conditions of gravitational emission of electrons with a banded energy spectrum; and (c) performing energy transfer along the spectrum, by cascade transition into the long wavelength region of eV-energy to the state of locking and amplification of the gravitational emission in the plasma and simultaneous compression to states of hydrostatic equilibrium; wherein in forming said states of hydrostatic equilibrium, in the composition of a working gas multi-electron atoms are used for quenching the spontaneous gravitational emission from the ground energy levels of the keY-region electron in the proper gravitational field, wherein, the method may also comprise using hydrogen and carbon for realizing the conditions of the nuclear fusion reaction to proceed, wherein carbon is used both for quenching the spectra of the gravitational emission with keY energies and as a fusion reaction catalyst.
机译:公开了一种形成致密高温等离子体的稳定状态的方法,该方法包括以下步骤:(a)借助于脉冲大电流放电从氢及其同位素产生致密高温等离子体; (b)以与带能谱的电子的重力发射条件相对应的参数从磁场区域注入等离子体; (c)通过级联跃迁到eV-能量的长波长区域中,以锁定和放大等离子体中的引力发射的状态,同时压缩到静液压平衡的状态,进行沿光谱的能量转移;其中,在形成所述流体静力平衡状态时,在工作气体的组成中,使用多电子原子在适当的引力场中猝灭来自keY区电子的地能能级的自发引力发射,其中,该方法可以还包括使用氢和碳来实现进行核聚变反应的条件,其中碳既用于淬灭具有keY能量的引力发射光谱,又用作聚变反应催化剂。

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