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Effect of proton irradiation on the normal-state low-energy excitations of Ba(Fe1-xRhx)(2)As-2 superconductors

机译:质子辐照对Ba(Fe1-xRhx)(2)As-2超导体常态低能激发的影响

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摘要

We present a 75As nuclear magnetic resonance (NMR) and resistivity study of the effect of 5.5 MeV proton irradiation on the optimal electron doped (x=0.068) and overdoped (x=0.107) Ba(Fe1−xRhx)2As2 iron based superconductors. While the proton induced defects only mildly suppress the critical temperature and increase residual resistivity in both compositions, sizable broadening of the NMR spectra was observed in all the irradiated samples at low temperature. The effect is significantly stronger in the optimally doped sample where the Curie Weiss temperature dependence of the line width suggests the onset of ferromagnetic correlations coexisting with superconductivity at the nanoscale. 1/T2 measurements revealed that the energy barrier characterizing the low energy spin fluctuations of these compounds is enhanced upon proton irradiation, suggesting that the defects are likely slowing down the fluctuations between (0,π) and (π,0) nematic ground states.
机译:我们提出了75 Me核磁共振(NMR)和5.5 MeV质子辐照对最佳电子掺杂(x = 0.068)和超掺杂(x = 0.107)Ba(Fe1-xRhx)2As2铁基超导体的影响的电阻率研究。尽管质子诱发的缺陷仅温和地抑制了临界温度并增加了两种组合物中的残余电阻率,但在低温下所有被辐照的样品中均观察到NMR光谱相当大的展宽。在最佳掺杂的样品中,该效应明显更强,其中线宽的居里·韦斯温度依赖性表明在纳米级与超导共存的铁磁相关性的开始。 1 / T2测量表明,质子辐照增强了表征这些化合物低能自旋涨落的能垒,这表明缺陷可能会减慢(0,π)和(π,0)向列基态之间的涨落。

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