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Dynamic of astrophysical jets in the complex octonion space

机译:复杂octonion空间中天体物理射流的动力学

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摘要

The paper aims to consider the strength gradient force as the dynamic of astrophysical jets, explaining the movement phenomena of astrophysical jets. J. C. Maxwell applied the quaternion analysis to describe the electromagnetic theory. This encourages others to adopt the complex quaternion and octonion to depict the electromagnetic and gravitational theories. In the complex octonion space, it is capable of deducing the field potential, field strength, field source, angular momentum, torque, force and so forth. As one component of the force, the strength gradient force relates to the gradient of the norm of field strength only, and is independent of not only the direction of field strength but also the mass and electric charge for the test particle. When the strength gradient force is considered as the thrust of the astrophysical jets, one can deduce some movement features of astrophysical jets, including the bipolarity, matter ingredient, precession, symmetric distribution, emitting, collimation, stability, continuing acceleration and so forth. The above results reveal that the strength gradient force is able to be applied to explain the main mechanical features of astrophysical jets, and is the competitive candidate of the dynamic of astrophysical jets.
机译:本文旨在将强度梯度力视为天体射流的动力,解释天体射流的运动现象。 J. C. Maxwell应用了四元数分析来描述电磁理论。这鼓励其他人采用复杂的四元数和八元数来描述电磁和引力理论。在复杂的octonion空间中,它能够推论出场电势,场强,场源,角动量,转矩,力等。强度梯度力作为力的一个分量,仅与场强范数的梯度有关,并且不仅与场强方向无关,而且与测试粒子的质量和电荷无关。当将强度梯度力视为天体射流的推力时,就可以推断出天体射流的一些运动特征,包括双极性,物质成分,进动,对称分布,发射,准直,稳定性,持续加速等。以上结果表明,强度梯度力可以用来解释天体射流的主要力学特征,并且是天体射流动力学的竞争候选者。

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