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Effect of sample size on the magnetic critical current density in nano-SiC doped MgB2 superconductors

机译:样品大小对掺杂纳米SiC的MgB2超导体中磁性临界电流密度的影响

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摘要

The effect of sample size on the critical current density and the flux pinning of pure and SiC doped MgB2 bulk samples has been investigated. At high fields a systematic degradation of magnetic Jc and Hirr was observed as the sample size decreased. However, Jc remarkably increased on decreasing the sample volume at low magnetic fields below 1 T. The SiC doped samples show less sample size effect than the pure samples, indicating a larger n factor and therefore a stronger pinning effect due to SiC doping. Hirr was observed to decrease as a logarithmic function of the sample volume, and the zero field Jc can be fitted as an exponential decay function.
机译:研究了样品大小对纯电流和SiC掺杂的MgB2块状样品的临界电流密度和磁通钉扎的影响。在高磁场下,随着样品尺寸的减小,观察到了磁性Jc和Hirr的系统降解。但是,Jc在低于1 T的低磁场下减小样品量时会显着增加。SiC掺杂的样品比纯样品显示出较小的样品尺寸效应,这表明n因子较大,因此由于SiC掺杂而产生的钉扎效应更强。观察到Hirr随样品体积的对数函数而减小,零场Jc可以拟合为指数衰减函数。

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