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Microwave surface resistance of pristine and neutron-irradiated MgB2 samples in magnetic field

机译:原始和中子辐照的MgB2样品在磁场中的微波表面电阻

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We report on the microwave surface resistance of two polycrystalline (MgB2)-B-11 samples; one consists of pristine material, the other has been irradiated at very high neutron fluence. It has already been reported that in the strongly irradiated sample the two gaps merge into a single value. The mw surface resistance has been measured in the linear regime as a function of the temperature and the DC magnetic field, at increasing and decreasing fields. The results obtained in the strongly irradiated sample are quite well justified in the framework of a generalized Coffey and Clem model, in which we take into account the field distribution inside the sample due to the critical state. The results obtained in the pristine sample show several anomalies, especially at low temperatures, which cannot be justified in the framework of standard models for the fluxon dynamics. Only at temperatures near T-c and for magnetic fields greater than 0.5H(c2)(T) the experimental data can quantitatively be accounted for by the Coffey and Clem model, provided that the upper-critical-field anisotropy is taken into due account.
机译:我们报告了两个多晶(MgB2)-B-11样品的微波表面电阻;一种由原始材料组成,另一种以很高的中子注量辐照。已经报道,在强辐射的样品中,两个间隙合并为一个值。在增加和减少磁场的情况下,已根据温度和直流磁场在线性范围内测量了mw表面电阻。在广义Coffey和Clem模型的框架内,在强辐照样品中获得的结果非常合理,在该模型中,我们考虑了由于临界状态而导致的样品内部场分布。在原始样品中获得的结果显示出一些异常,尤其是在低温下,这在通量动力学的标准模型框架内是无法证明的。仅在温度接近Tc且磁场大于0.5H(c2)(T)的情况下,Coffey和Clem模型才能定量地说明实验数据,但前提是必须考虑上临界场各向异性。

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