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Design of a Superconducting Magnetic Levitation System

机译:超导磁悬浮系统的设计

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A preliminary project for the realisation of the kilogram using the "superconducting magnetic levitation method" has been started at MIKES. The work will be carried out in cooperation with VNIIM, Russia. In the levitation method there are still problems, which have to be solved before the final goal, a relative uncertainty of 10~(-8) for the kilogram, can be I reached. The main problem at present is energy losses due the incompleteness of the Meissner effect. These losses will be generated if the magnetic flux intrudes into a superconductor. Energy losses can jeopardise the experiment. To measure these losses we are developing a cryogenic calorimeter. The resolution of the device will be about 1 nW. We have also started to optimise the geometry of the levitated body and the coil, which produces the levitating magnetic field in order to minimise the effect of the energy losses.
机译:MIKES已开始使用“超导磁悬浮法”实现千克的初步项目。该工作将与俄罗斯VNIIM合作进行。在悬浮法中,仍然存在一些问题,这些问题必须在最终目标之前解决,我才能达到千克的10〜(-8)相对不确定性。当前的主要问题是由于迈斯纳效应不完全而导致的能量损失。如果磁通量侵入超导体,则会产生这些损耗。能量损失会危害实验。为了测量这些损失,我们正在开发一种低温量热仪。该设备的分辨率约为1 nW。我们还开始优化悬浮体和线圈的几何形状,从而产生悬浮磁场,以最大程度地减少能量损失的影响。

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