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地球与行星内源磁场建模研究进展 被引量:2
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作者 高佳维 戎昭金 +7 位作者 魏勇 王誉棋 岳铫辰 石振 顾炜东 汪东泉 翟帅瑜 李欣舟 《地球与行星物理论评(中英文)》 2024年第6期619-637,共19页
太阳系绝大多数行星都拥有随星体自转而共转的内源磁场.随着人类不断地进行深空探测,人们已经对所有已知具有内源磁场的太阳系星体建立起了其对应的行星磁场模型.行星磁场建模是深入研究行星内部动力学过程、探究行星演化历史、理解行... 太阳系绝大多数行星都拥有随星体自转而共转的内源磁场.随着人类不断地进行深空探测,人们已经对所有已知具有内源磁场的太阳系星体建立起了其对应的行星磁场模型.行星磁场建模是深入研究行星内部动力学过程、探究行星演化历史、理解行星磁场与太阳风相互作用、认识行星磁场对高能带电粒子的屏蔽效应等多种研究方向的重要基础.同时,行星磁场建模也是一项多学科交叉的研究工作,其涉及到行星磁场建模理论、内外源磁场场源分离、参数反演方法与方程优化等多方面的研究.本文综述了地球与太阳系其他行星,包括月球以及木卫三两颗卫星在磁场建模方向的研究进展,描述了行星内源磁场的特征,整理了太阳系行星最准确的全球磁场模型.本文首先从行星磁场的数学建模方法开始,梳理了自高斯时代以来磁场建模技术的发展历史,介绍了行星磁场建模研究的热点方法.文章最后展望了未来行星磁场建模研究的发展趋势,以及我国未来的深空探测计划对行星磁场建模研究的可能贡献. 展开更多
关键词 地球磁场 行星磁场 内源磁场 磁场建模 建模方法
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木星磁场研究:回顾与展望
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作者 顾炜东 魏勇 +4 位作者 尧中华 高佳维 王誉棋 何飞 戎昭金 《地球与行星物理论评(中英文)》 2024年第6期638-651,共14页
不同行星的内部结构与内部动力学过程不同,因此有的行星有内禀磁场,有的则尚未发现内禀磁场.行星的内禀磁场或大气与太阳风相互作用会形成磁层或感应磁层.不同特征的磁场、大气、卫星会使行星周围形成不一样的空间环境,进而对行星的演... 不同行星的内部结构与内部动力学过程不同,因此有的行星有内禀磁场,有的则尚未发现内禀磁场.行星的内禀磁场或大气与太阳风相互作用会形成磁层或感应磁层.不同特征的磁场、大气、卫星会使行星周围形成不一样的空间环境,进而对行星的演化过程产生不同的影响.探测行星磁场对了解行星的内部结构与内部动力学过程、空间环境和演化过程都有重要意义,因此行星磁场往往是行星探测关注的主要物理量之一.在对木星磁场的探测中,人们发现木星有着太阳系行星中最大的磁矩和磁层,木星表面磁场图像显示出明显的南北差异性和磁异常区(大蓝斑)等非偶极化特征,木星与地球大相径庭的内部结构也使木星发电机的结构和机制显得复杂和难以确认.本文对木星磁场的研究历史进行了回顾,并且以Juno时代对木星磁场的研究为主介绍了现在对木星磁场的认知,同时对未来的木星磁场研究和探测进行了展望,建议在未来的木星探测中携带进入木星大气的探针,并在探针上装载探测磁场的载荷,从而实现首次对木星磁场的进入大气的实地探测. 展开更多
关键词 木星 行星磁场 行星探测
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Origin of Magnetic Fields of Stellar Objects in the Universe Based on the 5D Projection Theory
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作者 Peter C. W. Fung K. W. Wong 《Journal of Modern Physics》 2017年第4期668-746,共79页
Beginning with a 5D homogeneous universe [1], we have provided a plausible explanation of the self-rotation phenomenon of stellar objects previously with illustration of large number of star samples [2], via a 5D-4D p... Beginning with a 5D homogeneous universe [1], we have provided a plausible explanation of the self-rotation phenomenon of stellar objects previously with illustration of large number of star samples [2], via a 5D-4D projection. The origin of such rotation is the balance of the angular momenta of stars and that of positive and negative charged e-trino pairs, within a 3D &otimes;1D?void of the stellar object, the existence of which is based on conservation/parity laws in physics if one starts with homogeneous 5D universe. While the in-phase e-trino pairs are proposed to be responsible for the generation of angular momentum, the anti-phase but oppositely charge pairs necessarily produce currents. In the 5D to 4D projection, one space variable in the 5D manifold was compacted to zero in most other 5D theories (including theories of Kaluza-Klein and Einstein [3] [4]). We have demonstrated, using the Fermat’s Last Theorem [5], that for validity of gauge invariance at the 4D-5D boundary, the 4th space variable in the 5D manifold is mapped into two current rings at both magnetic poles as required by Perelman entropy mapping;these loops are the origin of the dipolar magnetic field. One conclusion we draw is that there is no gravitational singularity, and hence no black holes in the universe, a result strongly supported by the recent discovery of many stars with masses well greater than 100 solar mass [6] [7] [8], without trace of phenomena observed (such as strong gamma and X ray emissions), which are supposed to be associated with black holes. We analyze the properties of such loop currents on the 4D-5D boundary, where Maxwell equations are valid. We derive explicit expressions for the dipolar fields over the whole temperature range. We then compare our prediction with measured surface magnetic fields of many stars. Since there is coupling in distribution between the in-phase and anti-phase pairs of e-trinos, the generated mag-netic field is directly related to the angular momentum, leading to the result that the magne 展开更多
关键词 5D Projection Theory Fermat’s Last Theorem Perelman’s Mappings Self-Rotation Dipolar magnetic field of Stars LAWS of STELLAR magnetism LAWS of STELLAR Angular Momentum magnetic Bode’s Law NON-EXISTENCE of Gravitational Singularity Semion State of Atoms in STELLAR Surface magnetic Storm planetary magnetic field Maxwell Equations at 4D-5D Boundary magnetic fields of the Trappist-1 System
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The Magnetic Field Effect on Planetary Nebulae
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作者 A. R. Khesali K. Kokabi 《Chinese Journal of Astronomy and Astrophysics》 CSCD 2006年第6期723-728,共6页
In our previous work on the 3-dimensional dynamical structure of planetary nebulae the effect of magnetic field was not considered. Recently Jordan et al. have directly detected magnetic fields in the central stars of... In our previous work on the 3-dimensional dynamical structure of planetary nebulae the effect of magnetic field was not considered. Recently Jordan et al. have directly detected magnetic fields in the central stars of some planetary nebulae. This discovery supports the hypothesis that the non-spherical shape of most planetary nebulae is caused by magnetic fields in AGB stars. In this study we focus on the role of initially weak toroidal magnetic fields embedded in a stellar wind in altering the shape of the PN. We found that magnetic pressure is probably influential on the observed shape of most PNe. 展开更多
关键词 ISM planetary nebulae - magnetic field PNe - magnetic field
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