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Quaternionic Approach to Dual Magnetohydrodynamics of Dyonic Cold Plasma

机译:钕冷等离子体双磁流体动力学的四态硫化方法

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The dual magnetohydrodynamics of dyonic plasma describes the study of electrodynamics equations along with the transport equations in the presence of electrons and magnetic monopoles. In this paper, we formulate the quaternionic dual fields equations, namely, the hydroelectric and hydromagnetic fields equations which are an analogous to the generalized Lamb vector field and vorticity field equations of dyonic cold plasma fluid. Further, we derive the quaternionic Dirac-Maxwell equations for dual magnetohydrodynamics of dyonic cold plasma. We also obtain the quaternionic dual continuity equations that describe the transport of dyonic fluid. Finally, we establish an analogy of Alfven wave equation which may generate from the flow of magnetic monopoles in the dyonic field of cold plasma. The present quaternionic formulation for dyonic cold plasma is well invariant under the duality, Lorentz, and CPT transformations.
机译:钕等离子体的双磁流体动力学描述了电动力学方程以及在电子和磁性垄断存在下的传输方程的研究。 在本文中,我们制定了季期双场方程,即水力和水磁场方程,其是与钕冷等离子体流体的广义羔羊载体场和涡旋场方程类似。 此外,我们推导出钕冷等离子体双磁流体动力学的四元天动麦克风方程。 我们还获得了描述染色液的运输的四元天性双连续性方程。 最后,我们建立了Alfven波动方程的类比,这可能从冷等离子体的右下磁场中的磁垄断流中产生。 染色冷等离子体的目前季铵化制剂在二元性,洛伦兹和CPT转化下是良好的不变性。

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