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Modern Physics Solution of the Saturn Rings Origin Problem – Electromagnetism and Superconductivity (The Possibility of the Unified Theory of the Planetary Rings Origin)

机译:土星环起源问题的现代物理解决方案-电磁学和超导性(行星环起源统一理论的可能性)

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Low temperature near Saturn and presence of a planetary magnetic bring us an idea of the possible existence of the superconductivity of the particles forming rings system. Experimental study has confirmed this suggestion. Rings can be a result of the interaction of the superconducting carbon doped ice particles of the protoplanetary cloud with the nonuniform planetary magnetic field. After appearance of the magnetic field of planet all particles receive additional movement due to Meissner-Ochsenfeld phenomenon. Their Kepler’s chaotic orbits start to shift to the magnetic equator plane and create the system of rings and gaps like an iron particles nearby magnet on laboratory table. The particles itself do not stuck together because they separated by magnetic field which is getting out from each one of them. Also gravity resonances of planet, it satellites and rings particles as well as other interactions play an important role in formation of the final ring’s picture. The same scenario is applicable to the origin of the rings of Jupiter, Uranus and Neptune located behind the asteroid belt.
机译:土星附近的低温和行星磁场的存在使我们想到了形成环系统的粒子的超导性可能存在。实验研究证实了这一建议。环是原行星云的超导碳掺杂冰粒与不均匀行星磁场相互作用的结果。在行星的磁场出现之后,由于迈斯纳-奥克森费尔德现象,所有粒子都接受了额外的运动。他们的开普勒(Kepler)混沌轨道开始转移到磁赤道平面,并在实验室工作台上的磁铁附近形成了像铁颗粒一样的环和间隙系统。粒子本身不会粘在一起,因为它们被磁场分离,磁场从每个粒子中散发出来。行星,它的卫星和环的粒子以及其他相互作用的引力共振在最终环图的形成中也起着重要作用。同样的情况也适用于位于小行星带后面的木星,天王星和海王星的环的起源。

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