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Rigidly connected magnetic lines: twisting and winding of magnetic lines

机译:刚性连接的磁力线:磁力线的扭转和绕组

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The dynamical process of magnetic flux variation in a fluid's stream tube is described by constructing 1+1+(2) decomposition of the gradient of fluid's 4-velocity. The necessary and sufficient conditions are obtained for a spacelike congruence to be a congruence of rigidly connected spacelike curves. The evolution of magnetic flux in a magnetic tube is explored under the assumptions that magnetic lines are rigidly connected and the chemical potential of the fluid is constant along a magnetic tube. The interplay between magnetic and stream tubes is demonstrated. It is shown that the growth of magnetic energy in a magnetic tube cannot exceed to that of a stream tube. It is found that the proper time variation of twist of magnetic lines is caused by gravitation inside a neutron star if magnetic lines are rigidly connected and charge neutrality condition holds. Helmholtz-like magnetic vorticity flux conservation in a magnetic tube constituted by rigidly connected geodetic magnetic lines is derived under the assumption that the charge neutrality condition holds. It is shown that the winding of frozen-in poloidal magnetic field due to differential rotation requires meridional circulation in an axisymmetric stationary hydromagnetic configuration.
机译:通过构建流体4速度的梯度的1 + 1 +(2)分解来描述流体流管管中的磁通量变化的动态过程。获得必要和充分的条件,以便是刚性连接的空间曲线的一致性的。在磁管中的磁通量中的磁通量的发展在磁线刚性连接的假设下,并且流体的化学电位沿磁管恒定。证明了磁性和流管之间的相互作用。结果表明,磁管中的磁能的生长不能超过流管的生长。结果发现,如果磁线刚性连接和充电中位条件保持,则磁线扭曲的适当时间变化是由中子星内的重力引起的。通过刚性连接的大地电磁线构成的磁管中的Helmholtz的磁性旋转磁通保存是在充电中立条件的假设下得出的。结果表明,由于差动旋转引起的冻结聚片磁场的绕组需要在轴对称固定水磁构造中的子午线循环。

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