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Supply of rotational energy to a levitated magnet by applying alternating transverse magnetic field

机译:通过施加交变横向磁场为悬浮磁铁提供旋转能

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This research investigates generation of spin torque acting on a permanent magnet, freely levitated above a high-Tc superconductor, under alternating transverse magnetic field. Numerical results of 6-d.o.f. motion show that the magnet increases its velocity of rotation around its cylindrical axis and finally obtains steady-state rotation. This velocity depends on the frequency of the input coil current. A simplified 2-d.o.f. system with only essential terms was introduced in order to discuss the mechanism of nonlinear coupling which generates spinning in alternating magnetic field. Experimental results were in good agreement with numerical ones. These results show possibility of supplying rotational energy to a levitating magnet by applying alternating magnetic field.
机译:这项研究调查了在交变横向磁场作用下,自由磁悬浮在高Tc超导体上方的永久磁铁上产生的自旋转矩。 6 d.o.f.的数值结果运动表明,磁体增加了绕其圆柱轴的旋转速度,并最终获得了稳态旋转。该速度取决于输入线圈电流的频率。简化的2-d.o.f。为了讨论在交变磁场中产生自旋的非线性耦合机制,引入了仅具有基本术语的系统。实验结果与数值结果吻合良好。这些结果表明通过施加交变磁场将旋转能提供给悬浮磁体的可能性。

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