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Surface currents on a perfect conductor, induced by a magnetic dipole

机译:磁偶极子在理想导体上产生的表面电流

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An oscillating magnetic dipole located near a perfect conductor induces a current density on the surface of the metal. We have derived an expression for this current density, and studied its field line patterns for various orientations of the dipole moment. When the dipole moment is perpendicular to the surface, the field lines are circles which run clockwise and counterclockwise. For a linear dipole oriented parallel to the surface, the field line pattern is much more complex, and it contains singular points. When the dipole moment rotates in a plane parallel to the surface, the field lines are spirals. A field line spirals inward from infinity to some given point, after which it spirals outward back to infinity. We have also considered the Poynting vector of the electromagnetic field near the surface, and we found that its field lines can have singular points or exhibit a vortex.
机译:位于理想导体附近的振荡磁偶极子会在金属表面感应出电流密度。我们导出了这种电流密度的表达式,并研究了偶极矩各个方向的场线图。当偶极矩垂直于表面时,磁力线为顺时针和逆时针方向延伸的圆。对于平行于表面定向的线性偶极子,场线图要复杂得多,并且包含奇异点。当偶极矩在平行于表面的平面中旋转时,磁力线为螺旋形。磁力线从无穷远向内螺旋到某个给定点,然后再向外螺旋回到无穷远。我们还考虑了表面附近电磁场的Poynting矢量,发现其场线可以具有奇异点或表现出涡旋。

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