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首页> 外文期刊>IEEE Transactions on Magnetics >Use of the vector magnetic potential concept and very high precision computation software to study the electromagnetic fields of accelerated charged particles
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Use of the vector magnetic potential concept and very high precision computation software to study the electromagnetic fields of accelerated charged particles

机译:使用矢量磁势概念和超高精度计算软件来研究加速带电粒子的电磁场

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摘要

When the vector magnetic potential (VMP) concept is combined with high-precision computation, like that available in Mathematica or Derive software, an analysis technique can be developed that also greatly simplifies the study of electric and magnetic fields created by individual accelerated particles. Sometimes this technique yields mathematical results that may not be intuitively obvious. For example, it can be shown that a linearly accelerated charge generates a field which opposes its own acceleration in a manner analogous to Newtonian inertial forces. Conditions for the two to be equal are developed. Further, it can be shown that under certain conditions, a spinning charge could generate a static electric field equal numerically to its own supposed Coulomb field simply because it is spinning Finally, it can be shown that the spinning charge, when linearly accelerated, gives results consistent with restricted relativity concepts.
机译:当矢量磁势(VMP)概念与诸如Mathematica或Derive软件中提供的高精度计算相结合时,可以开发出一种分析技术,该技术还可以大大简化由单个加速粒子产生的电场和磁场的研究。有时,此技术会产生直观上可能不明显的数学结果。例如,可以看出,线性加速的电荷以类似于牛顿惯性力的方式产生了一个与其自身的加速度相反的场。提出了两个相等的条件。此外,可以证明,在某些条件下,旋转电荷可能仅由于其旋转而在数值上产生与其自身假定的库仑场相等的静电场。最后,可以证明,当线性加速时,旋转电荷会产生结果与狭义相对论概念一致。

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