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Superconductivity of Saturn Rings: Quantum Locking, Rings Disc Thickness and Its Time Creation

机译:土星环的超导性:量子锁定,环盘厚度及其产生时间

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The article demonstrates how rings disc of Saturn was created after appearance of the planetary magnetic field from superconducting iced particles of the protoplanetary cloud moving around planet by chaotic orbits. It is based on the fact that Saturn has magnetic field and the temperature of its vicinity is low enough to have superconductivity. Electromagnetic simulation estimates time of rings disc formation with the thickness about few meters from a few thousand years up to few tens of thousands of years. A rings disk has a stable structure located within magnetic equator of Saturn due to quantum locking of the particles by planetary magnetic field. Also may happened contribution to the rings disc from the debris of the moons migrated inward towards Saturn and particles of the frozen water coming from the geyser of the geologically active satellite (as Enceladus contributed to the E-ring). Suggested mechanism of the rings formation works even in case where only a small fraction of the particles poses superconductivity. Presented electromagnetic modeling of the role of superconducting iced particles of the rings disc origin, dynamics and evolution allow us to enrich the classical theories based on gravitational, mechanical, magnetohydrodynamic and plasma interactions.
机译:这篇文章演示了土星环的圆盘是如何在行星磁场出现之后由混沌行星绕行星绕轨道运动的原行星云的超导冰粒形成的。基于这样的事实,土星具有磁场,其附近的温度足够低,因此具有超导性。电磁模拟估计了从几千年到几万年的厚度约几米的环形盘形成时间。由于行星磁场对粒子的量子锁定,环形盘具有位于土星磁赤道内的稳定结构。也可能发生了从月球碎片向内移向土星的过程对圆盘的贡献,以及来自地质活跃卫星的间歇泉的冷冻水颗粒(因为土卫二对E环的贡献)。即使只有一小部分颗粒具有超导性,建议的环形成机理也能起作用。提出的电磁模型对圆盘起源,动力学和演化的超导冰粒的作用使我们能够丰富基于重力,机械,磁流体动力学和等离子体相互作用的经典理论。

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